Saturday, 21 April 2012

Carticel





Dosage Form: implant
FULL PRESCRIBING INFORMATION

Indications and Usage for Carticel


Carticel is indicated for the repair of symptomatic cartilage defects of the femoral condyle (medial, lateral or trochlea), caused by acute or repetitive trauma, in patients who have had an inadequate response to a prior arthroscopic or other surgical repair procedure (e.g., debridement, microfracture, drilling/abrasion arthroplasty, or osteochondral allograft/autograft).


Carticel should be used only in conjunction with debridement, placement of a periosteal flap and rehabilitation. The independent contributions of the autologous cultured chondrocytes and other components of the therapy to outcome are unknown.


Carticel is not indicated for the treatment of cartilage damage associated with generalized osteoarthritis.


Carticel is not recommended for patients with total meniscectomy unless surgically reconstructed prior to or concurrent with Carticel implantation.



Carticel Dosage and Administration




For Autologous Implantation Only

Dosage


Patients in the Swedish series [see Clinical Studies (14)] received a wide range of cell doses per cm2 of defect. Available data on 70 of 78 patients with femoral condyle defects showed a median dose of 1.6 million cells/cm2 of defect. The middle 80% of these patients received from 0.64 million to 3.3 million cells/cm2.




Each Carticel finished product vial contains approximately 12 million cells. Genzyme provides a single vial for each defect measuring ≤ 7 cm2. Two vials of Carticel are provided for defects 7 to 14 cm2, and three vials are provided for defects > 14 cm2. This is based on Genzyme’s greater than 10 years of experience with Carticel.



Handling Precautions and Preparation


2.2.1 Handling Precautions

The Carticel product is intended solely for autologous use. Prior to Carticel implantation, match the patient name and ID number on the certificate of analysis to the patient’s chart and the patient ID on the shipping box, transport cylinder and vial.


Healthcare providers should employ universal precautions in handling the biopsy samples and the Carticel product [see Risk of Transmissible Infectious Diseases (5.2)].


Refer to the Indications and Usage (1) and Warnings and Precautions (5) Sections for additional considerations regarding the use of Carticel.


2.2.2 Preparation

NOTE:


The exterior of the Carticel vial containing the cultured cells is NOT sterile. Follow strict sterile technique protocols.


When treating a defect that requires multiple vials of cells, resuspend, aspirate and inject one vial at a time.



  1. Remove red plastic lid from vial. Wipe the vial surface and lid with alcohol.

  2. Inspect vial contents for particulates, discoloration or turbidity. The cellular product appears as a yellowish clump in the bottom of the vial. Do not administer if contents appear turbid prior to cell suspension.

  3. While holding vial in a vertical position, insert the needle of the intraspinal catheter into the vial. The needle must be positioned just above the fluid level. Slowly remove the inner needle from the catheter, leaving flexible tip behind. Attach a tuberculin syringe to catheter.

  4. Lower the catheter tip into the media and position just above the cell pellet. Aspirate all the medium from the vial leaving only the cell pellet behind. Slowly expel medium back into the vial. This action will break the cell pellet and resuspend the cells in the medium.

  5. Lower the catheter tip to the base of the vial and aspirate all contents into syringe, leaving the vial empty. Slowly inject the contents into the vial again. This will assure complete suspension of the cells. Repeat these steps as needed to ensure all cells are resuspended. Cell resuspension is complete when cell particles are no longer apparent, and the medium is a consistent, “cloudy” mixture. Aspirate all contents of vial into syringe. Always hold syringe vertical to keep an air pocket at the proximal end of syringe.


Administration


Implantation of the Carticel product should be restricted to physicians who have completed Genzyme Biosurgery’s Surgeon Training Program.


Implantation of the Carticel product is performed during arthrotomy and requires both preparation of the defect bed and a periosteal flap to secure the implant. Complete hemostasis must be achieved prior to periosteal fixation and cell implantation. See the Carticel Surgical Manual, Genzyme document #65021 for instructions on the performance of these procedures.


2.3.1 Implantation
  1. Insert the catheter tip through the superior opening of the periosteal chamber at the site of the defect. Advance catheter to most inferior aspect of the defect.

  2. Slowly inject a cell dose while moving the catheter tip from side to side and withdrawing the catheter proximally. This will ensure an even distribution of the cells throughout the defect.

  3. Complete the implantation by closing the superior opening of the periosteum as instructed. See Carticel Surgical Manual, Genzyme document #65021.


Dosage Forms and Strengths


One vial of Carticel (autologous cultured chondrocytes) contains approximately 12 million cells.



Contraindications


Carticel should not be used in patients with a known history of hypersensitivity to gentamicin, other aminoglycosides or materials of bovine origin.


Gentamicin is added to both the cartilage biopsy transport media and in the culture media used during the processing of Carticel. Residual quantities of gentamicin up to 5 µg/mL are present in the Carticel product.


Fetal bovine serum is a component in the culture medium used to propagate the autologous chondrocytes. Trace quantities of bovine-derived proteins may be present in the Carticel product.



Warnings and Precautions



Subsequent Surgical Procedures


Review of the data from the Study of the Treatment of Articular Repair (STAR) and the Registry Based Study (RBS) [see Clinical Trials Experience (6.1)] as well as the Carticel worldwide experience (adverse reactions solicited through the Cartilage Repair Registry (CRR) and spontaneous reports) as of November 21, 1997 showed that the occurrence of a subsequent surgical procedure, primarily arthroscopic, following Carticel implantation is common. In the STAR study, 49% of patients underwent a subsequent surgical procedure, irrespective of relationship to Carticel (6.2). Symptoms leading to arthroscopic intervention included catching, locking, clicking or pain. Patients who develop clinical signs of tissue hypertrophy, including catching or clicking, should be evaluated and arthroscopy may be indicated for treatment or further assessment.



Risk of Transmissible Infectious Diseases


The Carticel product is intended solely for autologous use. Patients undergoing the surgical procedures associated with Carticel are not routinely tested for transmissible infectious diseases. Therefore, the cartilage biopsy and the Carticel product may carry the risk of transmitting infectious diseases to the health care provider handling these tissues. Accordingly, healthcare providers should employ universal precautions in handling the biopsy samples and the Carticel product.



Pre-surgical Assessment of Comorbidities


The following conditions should be assessed and treated prior to or concurrent with implantation with Carticel:



  1. Unstable meniscus tears should be repaired or resected.

  2. If the patient has had a total meniscectomy, absent meniscus should be reconstructed.

  3. Instability of the knee may adversely affect the success of the procedure and should be corrected. The anterior and posterior cruciate ligaments should be free of laxity as well as stable and intact. It is recommended that cruciate deficiencies be corrected.

  4. Abnormal weight-distribution within the joint may adversely affect the success of the procedure and should be corrected. The tibial/femoral joint should be properly aligned. When treating trochlear defects, abnormal patellar mechanics should be assessed and corrected.


Product Safety and Sterility


The safety of the Carticel product is unknown in patients with malignancy in the area of cartilage biopsy or implant. The potential exists for in vitro expansion and subsequent implantation of malignant or dysplastic cells present in biopsy tissue. In addition, implantation of normal autologous chondrocytes could theoretically stimulate growth of malignant cells in the area of the implant, although there have been no reported incidents in humans or animals.


The Carticel product is shipped following a preliminary sterility test with a 48-hour incubation to determine absence of microbial growth. Final (14 day incubation) sterility test results are not available at the time of implantation.



Adverse Reactions


Information on the safety of implanted autologous chondrocytes is derived from the Study of the Treatment of Articular Repair (STAR) [see Clinical Studies (14)], the Cartilage Repair Registry, the Swedish Series, and post-marketing adverse event reporting.


The most common serious adverse events (> 5% of patients) derived from the STAR study include arthrofibrosis/joint adhesion, graft overgrowth, chondromalacia or chondrosis, cartilage injury, graft complication, meniscal lesion and graft delamination. Only serious adverse events were collected in this study.



Clinical Trials Experience


The adverse reaction rates as well as the rate and type of subsequent surgical procedures from Carticel studies of different designs cannot be directly compared amongst each other. Adverse reaction data from these studies do, however, provide a basis for identifying adverse reactions that may be related to product use and for estimating their frequency.


Study of the Treatment of Articular Repair (STAR)


In the STAR study [see Study of the Treatment of Articular Repair (STAR) (14.2.2)], patients who had experienced an inadequate response to a prior cartilage repair procedure underwent Carticel implantation to the index lesion. A total of 154 patients were implanted with Carticel; 28 patients discontinued the study early. The numbers of patients completing the 24 and 48 month follow-up visits are 136 and 115, respectively. Mean patient age was 35 years at consent. The majority of patients were Caucasian (135; 88%) and male (106; 69%).


Seventy-six (76) (49% of 154) patients underwent 113 subsequent surgical procedures (SSPs) on the treated knee, irrespective of relationship to Carticel, during the 4 year follow up. Of the 76 patients, 52 patients had 1 SSP, 15 patients had 2 SSPs, and 9 patients had 3 or more SSPs. Sixty-one (61) (80%) of the 76 patients who had an SSP underwent a procedure within the first 24 months after implantation. The majority of patients, 83% (63 of the 76), underwent an arthroscopy or manipulation under anesthesia only. Table 1 shows the interventions during SSPs in > 2% of patients.

































Table 1: Interventions during Subsequent Surgical Procedures, Regardless of Relationship, in > 2% of Patients
Intervention% of 154

Patients

*

Includes debridement of index lesion and other defects


Includes debridement of other joint structures in addition to cartilage (e.g., patellar fat pad)

Debridement of Cartilage Lesion*

31% (47/154)   


Lysis of Adhesions14% (21/154)
Synovectomy / Synovial Plica Excision12% (19/154)
Other Debridement10% (16/154)
Chondroplasty6% (10/154)
Meniscectomy6% (10/154)
Loose Body Removal5% (7/154)
Microfracture – Index lesion5% (7/154)
Scar Tissue Removal5% (7/154)
Release of Patellar Retinaculum4% (6/154)
Hardware Removal4% (6/154)
Microfracture – New lesion4% (6/154)
Osteotomy3% (5/154)

Lysis of adhesions was the most frequent surgical intervention performed in the first 6 months. After 6 months, cartilage debridement was the most frequently performed intervention. In the STAR study, 61% (46/76) of patients who required an SSP after Carticel did not meet failure criteria by either modified Cincinnati score or surgical criteria (e.g., graft delamination or surgical procedure violating the subchondral bone.)


The most clinically significant interventions or findings involving the Carticel graft or periosteal patch are as follows: 3 Carticel grafts were completely removed and 1 was partially removed due to delamination. Partial delamination or fraying of the graft or periosteal patch was reported in 10 additional patients. Four (4) of these patients underwent reattachment/repair of the periosteal patch. Finally, a partially intact graft was found in 1 patient who was re-implanted. Detailed lists of interventions and findings that may have been associated with the graft or periosteal patch are presented in Tables 1 and 2, respectively.


Table 2 shows the serious adverse events (SAEs) that occurred in ≥ 5% of patients, regardless of relationship to study treatment.























Table 2: Most Frequent Serious Adverse Events (in ≥ 5% of Patients), Regardless of Relationship, in the STAR Study
Serious Adverse Events% of 154

Patients

*

Encompasses cartilage injuries throughout the joint e.g., onset of new defects and tibial plateau fibrillation


Includes periosteal patch complications, graft fraying or fibrillation


Arthrofibrosis/Joint Adhesions 


16% (25/154)
Graft Overgrowth15% (23/154)
Chondromalacia or Chondrosis12% (18/154)
Cartilage Injury*11% (17/154)
Graft Complication10% (15/154)
Meniscal Lesion8% (12/154)
Graft Delamination6% (9/154)
Osteoarthritis5% (7/154)

Registry Based Study (RBS)


Data from a cohort of 97 Carticel treated patients, who were retrospectively evaluated in the Registry Based Study [see Registry-Based Study (RBS) (14.2.1)], showed that 39% (38/97) of patients had a SSP within 3 years of which 63% (24/38) were assessed as related to Carticel. Shaving or trimming (debridement) of overgrown tissue (hypertrophic) commonly relieved patients’ symptoms. In the RBS, 67% (16/24) of patients who required arthroscopy after Carticel had a good clinical benefit in terms of improved function and relief of symptoms. Table 3 shows the findings at surgery for the 38 patients who underwent a surgical procedure after Carticel.






















Table 3: Most Frequent Findings (in ≥ 5% of Patients) at Subsequent Surgical Procedures in the Registry Based Study
Symptoms or Surgical Findings

(MedDRA preferred term)
% of 97

Patients
Graft overgrowth10% (10/97)
Partial graft

delamination
8% (8/97)
Chondromalacia8% (8/97)
Arthrofibrosis/Joint

adhesions
8% (8/97)
Arthralgia7% (7/97)
Synovitis6% (6/97)
   Meniscal lesion5% (5/97)
   Loose Body5% (5/97)

Swedish Series


Of 153 patients treated with autologous cultured chondrocyte implantation in the Swedish Series [see Clinical Studies (14)], 22% (34/153) of patients experienced the adverse reactions presented in Table 4 below.




















Table 4: Initial ACI Experience Swedish Series Serious Adverse Reactions (Occurring at a frequency of 1% or more)
Serious Adverse Reactions% of 153 Patients
Tissue hypertrophy See below
Intra-articular adhesions8%
Superficial wound infection3%
Hypertrophic synovitis3%
Post-operative hematoma2%
Adhesions of the bursa suprapatellaris2%
Hypertrophic synovium1%

About 1% of patients developed severe adhesions resulting in “frozen knee” and requiring lysis. Adverse reactions noted at a level of less than 1% included keloid-like scar, pannus formation, significant swelling of the joint, pain with post-operative fever, and hematoma following arthroscopy.


In this series, arthroscopy was scheduled to be undertaken at 18 months of follow up, regardless of patient symptoms. Of the patients who had arthroscopy, 43% (37/86) had hypertrophic tissue. Forty of the 85 patients had femoral condyle defects. Of these, 25% (10/40) of patients had some hypertrophic tissue noted at follow-up arthroscopy. Some patients had clinical symptoms that included painful crepitations or catching, and these symptoms generally resolved after arthroscopic resection of the hypertrophic tissue. Ten percent (10%) of patients with hypertrophy required additional treatment after hypertrophic tissue recurred following initial resection. Not all patients with tissue hypertrophy noted at arthroscopy were symptomatic.



Postmarketing Experience


The following adverse reactions have been identified during post-approval use of Carticel. Most of these reactions are reported voluntarily, and it is not always possible to reliably estimate their frequency or establish a causal relationship to drug exposure. Furthermore, the reported frequency of spontaneous reports underestimates the true frequency of adverse reactions. As of July 31, 2006, approximately 12,500 patients have been implanted with Carticel and 559 patients have reported serious adverse reactions after treatment. The most frequently identified operative findings in these patients, in descending order of frequency, were graft overgrowth, graft delamination (partial or complete), arthrofibrosis, joint adhesions, meniscus lesion or tear, graft complications, chondromalacia, loose body in knee joint, and joint malalignment.



USE IN SPECIFIC POPULATIONS



Pediatric Use


Safety and effectiveness in pediatric patients have not been established.



Geriatric Use


Clinical studies of Carticel did not include sufficient numbers of subjects aged 65 and over to determine whether they respond differently from younger subjects.



Carticel Description


Autologous cultured chondrocytes, the Carticel product, are derived from in vitro expansion of chondrocytes harvested from the patient’s normal, femoral articular cartilage. Biopsies from a lesser-weight bearing area are the source of chondrocytes, which are isolated, expanded through cell culture, and implanted into articular cartilage defects beneath an autologous periosteal flap. Prior to final packaging, cell viability is assessed to be at least 80%.


Each single use container of autologous cultured chondrocytes has approximately 12 million cells aseptically processed and suspended in 0.4 mL of sterile, buffered Dulbecco’s Modified Eagles Medium (DMEM). Both the biopsy transport media and the cell culture media contain gentamicin. Residual quantities of gentamicin up to 5 µg/mL may be present in the Carticel product.



Carticel - Clinical Pharmacology


Hyaline cartilage forms the articular surface of the femoral condyle. Studies have shown that implantation of autologous chondrocytes into the articular defect can result in the development of hyaline-like cartilage [see Clinical Studies (14)].1,2,3,4,5 Normal hyaline cartilage consists of chondrocytes (≤ 5% total volume) and extracellular matrix (≥ 95% total volume). The matrix contains a variety of macromolecules, including type II collagen and proteoglycan. The structure of the matrix allows the hyaline cartilage to absorb shock and withstand shearing and compression forces. Normal hyaline cartilage also has an extremely low coefficient of friction at the articular surface. Damage to articular cartilage from acute or repetitive trauma often results in pain and disability. However, because hyaline cartilage is avascular, spontaneous healing of large defects is not believed to occur in humans.


A variety of surgical procedures have been used in attempts to promote repair of articular cartilage, and a few studies have evaluated the histology resulting from these interventions. Generally, procedures such as marrow stimulation techniques (MST) have been shown to produce fibrocartilage or hybrid mixtures of fibrocartilage and hyaline cartilage. Published data show that autologous chondrocyte implantation (ACI) is more likely than MST to result in hyaline-like cartilage at the repair site.1,2,4,5 However, because of differences in study design, lesion size and concomitant patient conditions, these data are not sufficient to draw conclusions concerning the long-term correlation of histology and clinical outcomes.



Nonclinical Toxicology



Carcinogenesis, Mutagenesis, Impairment of Fertility


No carcinogenicity or mutagenicity data are available for Carticel in animals or in humans. No studies on the effects of Carticel on fertility have been conducted.



Animal Pharmacology and/or Toxicology


Pre-approval Studies

Bioactivity of autologous chondrocytes implanted under a periosteal patch was reported in the BLA for three rabbit studies6,7,8 of up to 52 weeks duration post-implant and one dog study9 of up to 18 months duration post-implant.


Rabbit Studies


  • Histologic evaluations were performed at 8, 12 and 52 weeks. Improved healing of experimental defects implanted with autologous chondrocytes was observed compared to periosteal flap alone at 8, 12 and 52 weeks.

Dog Study


  • Histologic evaluations were performed at 6 and 12 weeks and 12 and 18 months. Autologous chondrocytes showed improved healing compared to both empty defects and to defects covered with periosteum alone at 6 and 12 weeks. However, by the 12 and 18 month evaluations, the repair tissue had deteriorated so that no advantage of ACI over periosteum alone controls was demonstrated.

Beyond histologic variability of the defect site, no adverse tissue reaction was identified in any animals in these studies.


Post-approval Studies

Five additional large animal, post-approval studies were performed.


Goat Studies


  • Three of four goat studies were 16 weeks in duration. In the fourth study, the goats were sacrificed immediately after periosteal membrane placement. Despite difficulty in postoperative management of goats and resulting subchondral plate collapse in some animals in the 16-week studies, results from all four studies suggested that chondrocytes may contribute to histological repair of focal cartilage lesions. In the only bilateral joint study, serious subchondral collapse and uniformly poor repair resulted in inconclusive data. No safety issues were identified in any of these studies.

Horse Study


  • The 8-week study included two experimental arms in order to model repair of cartilage lesions with or without subchondral penetration. Both models exhibited destruction/dislodgement of the periosteal flap; however, results suggested that chondrocytes may contribute to histologic repair in cartilage defects with subchondral penetration.

While the defects in all animal models exhibited highly variable repair tissue quality (resulting in only moderate histologic scores) the best repairs with implanted chondrocytes produced hyaline-like cartilage characterized by matrix predominating in type II collagen and saffranin-O or toluidine blue staining proteoglycan. Chondrocyte labeling in one of the rabbit studies8 and in an independent study in goats by Dell’Accio et al10 demonstrated that the hyaline-like matrix in these defects was the product of the implanted autologous chondrocytes.



Clinical Studies



Pre-approval Studies


Clinical information regarding the use of autologous cultured chondrocytes was obtained from 2 open-label, observational studies consisting of a series of patients treated in Sweden and the Cartilage Repair Registry. Patients in the Swedish series received an autologous cultured chondrocyte product similar to Carticel.


14.1.1 Swedish Series

The series consists of 153 patients who received autologous chondrocyte implantation for various defects of the knee. Patients presented with cartilage defects of the femoral condyle, patella, tibia, a combination of these, or osteochondritis dissecans, with or without comorbidity such as anterior cruciate ligament insufficiency requiring reconstruction.


Following autologous chondrocyte implantation, patients were followed for various durations. Clinical follow-up ranged from 1 week to 94 months; 86 patients had at least 18 months of follow-up. Most patients had arthroscopic evaluation; a subset had biopsy and histological evaluations. All patients were retrospectively classified as having one of three clinical outcomes: resumed all activities, some improvement, or no improvement. Clinical outcomes were also reported for patient subgroups including: 1) 40 patients with femoral condyle lesions, 2) 12 patients with osteochondritis dissecans lesions and 3) 22 patients who failed a prior debridement.


1) Clinical Outcome - Patients with Femoral Condyle Lesions


A total of 78 of 153 patients had femoral condyle lesions with or without co-morbidity. Patients had one or more defects ranging in size from < 1-20 cm2. Of the patients with femoral condyle lesions, 40 were evaluable after at least 18 months (median = 25; range = 18 to 94 months). Clinical outcomes for the 40 patients are summarized in Table 5.
























Table 5: Patient Response to Treatment
DefectResumed

All

Activities
Some

Improvement
No

Improvement
Total

Patients

Femoral

Condyle



7

(29%)



8

(33%)



9

(38%)


24

Femoral

Condyle plus other

Non-Cartilage Repair



4

(25%)



9

(56%)



3

(19%)


16
Total

11

(28%)



17

(42%)



12

(30%)


40

2) Clinical Outcome – Patients With Osteochondritis Dissecans Lesions


Of the 12 patients who received autologous cultured chondrocytes for treatment of an osteochondritis lesion, 6 of the 12 had “resumed all activities”, 4 had “some improvement” and 2 had “no improvement” after the 18-month (median = 25; range = 18-94 months) follow-up period.


3) Clinical Outcome – Failed Earlier Procedures


Debridement of the cartilage defect is often performed along with administration of autologous cultured chondrocytes. To help differentiate the effects of the autologous cultured chondrocyte implantation procedure from those of debridement alone, an analysis was performed on 22 patients who had failed prior debridement and had a follow-up period after autologous cultured chondrocyte implantation which was at least as long as the time period to failure of their initial debridement. At the end of follow-up, 5 of the 22 patients had a functional outcome rating of “resumed all activities”, 8 of the 22 patients had a rating of “some improvement” and 9 of the 22 patients had a rating of “no improvement”. Thus, 13 of the 22 patients (59%) who had failed an earlier debridement had outcomes that were more favorable and durable following autologous cultured chondrocyte implantation than their previous debridement without cells.


Histological Outcome


Twenty-two (22) patients in the Swedish series had histological evaluation of biopsies from the implant site one or more years after their autologous chondrocyte implantation. Fifteen (15) of those patients had defects of the femoral condyle and 7 had defects of the patella. Six (6) of the 15 femoral condyle biopsies showed hyaline-like cartilage, 5 had a mixture of hyaline and fibrocartilage, and 4 had only fibrocartilage. Of the 6 biopsies with hyaline-like cartilage, 2 had minimal to no surface irregularities and 4 had some surface irregularities (e.g., fissures, fibrillations, etc.).


Arthroscopic Outcome


As an objective outcome evaluation, 86 of the 153 patients had a follow-up arthroscopy for investigational purposes at 18 months or more post-implantation. In some cases, the quality of repair observed at arthroscopy was considered to be supportive of the clinical or functional outcomes. A substantial number of patients were noted at arthroscopy to have tissue hypertrophy [see Adverse Reactions (6)].


14.1.2 Cartilage Repair Registry

The Cartilage Repair Registry (CRR) was established upon the introduction of Carticel into orthopedic practice in March of 1995. The CRR was designed to prospectively collect the clinical outcomes of Carticel and other cartilage repair treatments for chondral lesions in the knee. Clinical data were collected at baseline arthroscopy, implantation, intervals of 6 and 12 months, and annually thereafter; adverse reaction data were collected on an ongoing basis through CRR adverse reaction collection and spontaneous reporting. Inclusion in the CRR was based on a qualifying event that was defined as a knee arthroscopy in which a chondral lesion was identified and a cartilage biopsy was harvested. Participation in the CRR was voluntary, and not all patients biopsied or implanted were included. As of November 21, 1997, 891 patients had been implanted worldwide, and 644 of these patients were included in the CRR. Functional outcomes were based on responses to a modified version of the Cincinnati Knee Rating System.


Data from a subset of 191 US patients in the CRR as of December 31, 1996 who had undergone repair of lesions on the femoral condyle (medial, lateral or trochlea) were assessed to support licensure. Patients were between the ages of 15-57, 66% (126/191) were male, and 34% (64/191) were female and one patient’s gender was not reported. Of these 191 patients, 38 had at least 12 months of follow-up. At study baseline, these 38 patients’ mean rating of overall condition was 3.2, which is defined as fair to poor: limitations that affect activities of daily living-no sports possible. At 12 month follow-up, these patients reported an overall condition score of 6.4 defined as good: some limitation with sports but can participate if patient compensates. Although these patients were rated according to outcome measurements different from those used in the Swedish series, the results were consistent with the Swedish experience.



Post-approval Studies


Two post-approval studies were conducted and completed as a condition of approval for Carticel: the Registry Based Study (RBS) and the Study of the Treatment of Articular Repair (STAR).


14.2.1 Registry-Based Study (RBS)

The RBS was a retrospective analysis of data collected for a cohort of 97 U.S. patients treated between March of 1995 and March of 1997. Of the 97 patients enrolled, 95% completed 1-year follow-up, 80% completed 2-year follow-up and 74% completed 3-year follow-up. Of these 97 patients, 44 were part of the subset of 191 US patients in the CRR described above. A limitation of this study is the lack of a control group. Patients included in this study had a prior non-Carticel cartilage repair procedure (e.g., debridement or marrow stimulation procedure) performed at the time of the index arthroscopy, subsequently failed this procedure and went on to receive Carticel. In the 5 years prior to the index arthroscopy for the study, this patient population had received prior knee surgeries to include: 47% (46/97) of patients had at least one debridement/lavage of a cartilage defect, 25% (24/97) of patients had a bone marrow stimulation procedure, 31% (30/97) had at least one diagnostic arthroscopy, 30% (29/97) had at least one meniscus repair/meniscectomy and 10% (10/97) of patients had a ligament repair/reconstruction performed on the treated knee.


Using a modified Cincinnati Knee Rating System at study baseline, this patient population had a mean overall condition score of 3.1 defined as fair to poor: limitations that affect activities of daily living-no sports possible. Patients included were between the ages of 16-56, 69% (67/97) were male and 31% (30/97) were female. For the type of defect, 62% (60/97) of the defects were acute while 37% (36/97) were chronic. Of the treated defects, 75% (73/97) were treated on the medial femoral condyle (MFC), 26% (25/97) on the lateral femoral condyle (LFC) and 19% (18/97) on the trochlea. Adverse reactions collected during this study are provided in Adverse Reactions (6).


14.2.2 Study of the Treatment of Articular Repair (STAR)

The STAR study was an open-label within patient comparison of a prior non-Carticel (index) procedure to implantation of Carticel for articular cartilage defects of the distal femur. All patients had experienced an inadequate response to a prior non-Carticel surgical treatment, defined as both: a) patient and surgeon agreement that the patient’s symptoms/function required surgical re-treatment of the defect and b) the patient’s rating of the overall condition of the knee was a score ≤ 5 using the Modified Cincinnati Knee Rating System. In this patient population, the median time to meet the failure criteria was 3.4 months for the prior non-Carticel procedure and 90% of patients failed within 10.3 months. Patients who met these criteria were treated with Carticel and assessed every 6 months for up to 4 years.


Treatment failure for Carticel was defined as any of the following: a) the patient underwent surgical retreatment that violated the subchondral bone or reimplantation with Carticel for the same index defect, b) complete delamination or removal of the graft, or c) the patient’s rating of the overall condition of the knee using the Modified Cincinnati Knee Rating System failed to improve from the baseline knee score over 3 consecutive 6-month intervals.


A total of 154 patients were treated with Carticel. At the index surgery required for study entry, patients had one or more of the following interventions: 120 patients (78%) had debridement, 44 patients (29%) had microfracture, 18 (12%) had subchondral drilling, 10 (6%) had abrasion arthroplasty, and 7 (5%) had an osteochondral autograft. The mean lesion size was 4.6 (± 3.2, SD) cm2. Fifty patients (32%) had multiple lesions in the reference knee and 29 patients had Carticel implanted in more than one lesion. Lesions that were implanted were located on the medial femoral condyle in 109 patients, lateral femoral condyle in 32 patients and trochlea in 46 patients. Forty patients (26%) had lesions which involved osteochondritis dissecans (OCD).


Of the 154 patients treated with Carticel, 28 patients discontinued the study early. The numbers of patients completing the 24 and 48 month follow-up visits are 136 and 115, respectively. The majority of Carticel patients (N= 117) did not meet failure criteria during the study. By the end of the study, a total of 37 patients met the treatment failure criteria. Results for the 40 patients with OCD lesions were comparable to the total study population as 34 (85%) did not meet the failure criteria for the study and 6 (15%) failed treatment with Carticel. Table 6 illustrates, during each year of follow-up, the number of patients who failed Carticel by the surgical criteria along with the number of patients who failed by the Overall Modified Cincinnati scale criteria.




























Table 6: Category and Timing of Treatment Failure for Patients who Met Treatment Failure Criteria (N=37)
1 Year2 Years3 Years4 YearsTotal
Patients Who Failed During the Interval141111137
    Surgery criteria055111
    Overall Modified Cincinnati Scale criteria1466026

The Overall Modified Cincinnati mean baseline score for the patient population as a whole was 3.26, poor: significant limitations that affect activities of daily living, to fair: moderate limitations that affect activities of daily living, no sports possible. At 48 months, the mean score was 6.39, good: some limitations with sports but can participate/compensate. The improvement was statistically significant. Table 7 shows the improvement in the Overall Modified Cincinnati score over time.

















Table 7: Mean Overall Modified Cincinnati Score at Baseline and Follow-up Visits

*

Scores are for patients who returned for follow-up. Patients who failed by score criteria are included and patients who failed by surgical criteria are excluded from the scores for timepoints after the failure criteria were met.

Visit

Baseline

N=154



Month 12

N=146



Month 24

N=131



Month 36

N=104



Month 48

N=101



Overall Modified Cincinnati Score*  

Mean (SD)



3.26


(1.02)



5.58


(1.99)



5.92


(2.08)



5.87


(2.19)



6.39


(2.31)


In addition to the change over time in activity level as measured with the Overall Modified Cincinnati Scale, there were similar and consistent changes in knee symptoms and function as measured with the Knee Injury and Osteoarthritis Outcome Score (KOOS), a measure of knee-specific symptoms and function consisting of the following five subscales: pain, symptoms, sports and recreation, knee-related quality of life, and activities of daily living. At 12 months post-Carticel implant, the mean improvement from baseline for the patient population as a whole in each subscale was as follows: pain 19 (N = 146), symptoms 15 (N = 147), sports and recreation 17 (N = 129), knee-related quality of life 18 (N = 147), and activities of daily living 18 (N = 145). At 48 months post-Carticel implant, the mean improvement from baseline was as follows: pain 24 (N = 100), symptoms 19 (N = 101), sports and recreation 31 (N = 86), knee-related quality of life 32 (N = 101), and activities of daily living 23 (N = 99).


Adverse reactions collected during this study are provided in Adverse Reactions (6).



REFERENCES


  1. Knutsen G, Engebretsen L, Ludvigsen T, et al. Autologous chondrocyte implantation compared with microfracture in the knee. J Bone Joint Surg, 2004; 86A:455-464.

  2. Bentley G, Biant LC, Carrington RWJ, et al. A prospective, randomized comparison of autologous chondrocyte implantation versus mosaicplasty for osteochondral defects in the knee. J Bone Joint Surg Br. 2003;85-B:223-230.

  3. Brittberg M, Lindahl A, Nilsson A, et al. Treatment of deep cartilage defects in the knee with autologous chondrocyte transplantation. N Engl J Med. 1994;331:889-895.

  4. Peterson L, Minas T, Brittberg M, et al. Two- to 9-year outcome after autologous chondrocyte transplantation of

Thursday, 19 April 2012

Sectral 400mg tablets





1. Name Of The Medicinal Product



Sectral 400mg Tablets


2. Qualitative And Quantitative Composition



Each tablet contains 443.40mg of the active substance Acebutolol hydrochloride (equivalent to 400mg of base).



Also contains 21.20mg of lactose monohydrate.



For a full list of excipients, see section 6.1.



3. Pharmaceutical Form



Tablet



White to off-white, circular, biconvex, film-coated tablets with bevel edges, one face impressed 'SECTRAL 400 or ACB 400. Plain reverse.



4. Clinical Particulars



4.1 Therapeutic Indications



The management of hypertension, angina pectoris and the control of tachyarrhythmias.



4.2 Posology And Method Of Administration



Hypertension: Initial dosage of 400mg orally once daily at breakfast or 200mg orally twice daily. If response is not adequate within two weeks, dosage may be increased up to 400mg orally twice daily; in some patients 1200mg orally daily, given as 800mg at breakfast and 400mg in the evening may be required. A further reduction in blood pressure may be obtained by the concurrent administration of a thiazide diuretic or other anti-hypertensive agent (except Rauwolfia and its alkaloids).



Angina pectoris: Initial dosage of 400mg orally once daily at breakfast or 200mg twice daily. In severe forms up to 300mg three times daily may be required. Up to 1200mg daily has been used.



Cardiac Arrhythmias: When given orally, an initial dose of 200mg is recommended. The daily dose requirement for long term anti arrhythmic activity should lie between 400 and 1200mg daily. The dose can be gauged by response, and better control may be achieved by divided doses rather than single doses. It may take up to three hours for maximal anti-arrhythmic effect to become apparent.



Elderly: There are no specific dosage recommendations for the elderly with normal glomerular filtration rate. Dose reduction is necessary if moderate to severe renal impairment is present (see Section 4.4)



Children: Paediatric dose has not been established.



For all indications, it is advised that the lowest recommended dosage be used initially.



4.3 Contraindications



Cardiogenic shock is an absolute contraindication. Extreme caution is required in patients with blood pressures of the order of 100/60 mmHg or below.



Sectral is also contraindicated in patients with second and third degree heart block, sick sinus syndrome, marked bradycardia (< 45 – 50 bpm) and uncontrolled heart failure, metabolic acidosis, severe peripheral circulatory disorders, hypersensitivity to Acebutolol, any of the excipients or to beta blockers, and untreated phaeochromocytoma.



4.4 Special Warnings And Precautions For Use



Renal impairment is not contraindicated to the use of Sectral which has both renal and non-renal excretory pathways. Some caution should be exercised when administering high doses to patients with severe renal failure as accumulation could possibly occur in these circumstances.



The dosage frequency should not exceed once daily in patients with renal impairment. As a guide, the dosage should be reduced by 50% when glomerular filtration rates are between 25-50ml/min and by 75% when they are below 25ml/min (see section 4.2).



Drug-induced bronchospasm is usually at least partially reversible by the use of a suitable agonist.



Although cardio-selective beta blockers may have less effect on lung function than non-selective beta blockers as with all beta blockers these should be avoided in patients with obstructive airways disease unless there are compelling clinical reasons for their use. Where such reasons exist, cardio-selective β-blockers should be used with the utmost care. (see section 4.3)



Beta-blockers may induce bradycardia. In such cases, the dosage should be reduced. They may be used with patients with controlled heart failure. (see Section 4.3)



Use with caution in patients with Prinzmetal's angina.



Beta-blockers may aggravate peripheral circulatory disorders. They may mask signs of thyrotoxicosis and hypoglycaemia. They should only be used in patients with phaeochromocytoma with concomitant alpha-adrenoreceptor therapy.



Patients with known psoriasis should take beta-blockers only after careful consideration.



Beta-blockers may increase both the sensitivity towards allergens and the seriousness of anaphylactic reactions.



Withdrawal of treatment by beta-blockers should be achieved by gradual dosage reduction: this is especially important in patients with ischaemic heart disease.



When it has been decided to interrupt beta-blockade prior to surgery, therapy should be discontinued for at least 24 hours. Continuation of the therapy reduces the risk of arrhythmias but the risk of hypotension may be increased. If treatment is continued, caution should be observed with certain anaesthetic drugs. The patient may be protected against vagal reactions by intravenous administration of atropine



Patients with rare hereditary problems of galactose intolerance, the Lapp lactase deficiency or glucose-galactose malabsorption should not take this medicine



4.5 Interaction With Other Medicinal Products And Other Forms Of Interaction



Sectral should not be used with Verapamil or within several days of Verapamil therapy (and vice versa). Use with great care with any other calcium antagonists, particularly Diltiazem



Class 1 anti-arrthythmic drugs (such as disopyramide) and amiodarone may increase atrial conduction time and induce negative inotropic effects when used concomitantly with beta-blockers.



In patients with labile and insulin-dependent diabetes, the dosage of the hypoglycaemic agent may need to be reduced. However beta-blockers have also been known to blunt the effect of glibenclamide. Beta-adrenergic blockade may also prevent the appearance of signs of hypoglycaemia (tachycardia, see section 4.4)



Cross reactions due to displacement of other drugs from plasma protein binding sites are unlikely due to the low degree of plasma protein binding exhibited by Acebutolol and Diacetolol.



If a beta-blocker is used concurrently with clonidine the latter should not be withdrawn until several days after the former is discontinued.



Acebutolol may antagonize the effect of sympathomimetic and xanthine bronchodilators.



Concurrent use of digoxin and beta-blockers may occasionally induce serious bradycardia. The anti-hypertensive effects of beta-blockers may be attenuated by non-steroidal anti-inflammatory agents.



Concomitant administration of tricyclic antidepressants, barbiturates and phenothiazines as well as other anti-hypertensive agents may increase the blood pressure lowering effects of beta-blockers.



There is a theoretical risk that concurrent administration of monoamine oxidase inhibitors and high doses of beta-blockers, even if they are cardio-selective can produce hypertension. Sectral therapy should be brought to the attention of the anaesthetist prior to general anaesthesia. (see Section 4.4). If treatment is continued, special care should be taken when using anaesthetic agents such as ether, cyclopropane and trichlorethylene.



4.6 Pregnancy And Lactation



Pregnancy: Acebutolol should not be administered to female patients during the first trimester of pregnancy unless the physician considers it essential. In such cases the lowest possible dose should be used.



Beta blockers administered in late pregnancy may give rise to bradycardia, hypoglycaemia and cardiac or pulmonary complications in the foetus/neonate.



Beta-blockers can reduce placental perfusion, which may result in intrauterine foetal death, immature and premature deliveries



Animal studies have shown no teratogenic hazard.



Lactation: Acebutolol and its active metabolites are excreted in human milk and effects have been shown in breastfed newborns/infants of treated mothers. Acebutolol should not be used during breast-feeding.



4.7 Effects On Ability To Drive And Use Machines



No studies on the effects on the ability to drive and use machines have been performed. As with all beta-blockers, dizziness or fatigue may occur occasionally. This should be taken into account when driving or operating machinery.



4.8 Undesirable Effects



Adverse reactions associated with acebutolol during controlled clinical trials in patients with hypertension, angina pectoris or arrhythmia (1002 patients exposed to acebutolol) are presented by system organ class and by decreasing order of frequency.



The frequency of the events “anti-nuclear antibody” and “lupus like syndrome” was found from 1440 patients suffering from hypertension, angina pectoris or arrhythmia and exposed to acebutolol in open or double blind studies performed in the United States.



Frequencies are defined as: very common (



When the exact frequency of the event was not reported, the frequency category assigned is “not known” (ADRs with *).



Adverse reactions reported from post-marketing experience are also listed. These adverse reactions are derived from spontaneous reports and therefore, the frequency of these adverse reactions is “not known” (cannot be estimated from the available data).



The most frequent and serious adverse reactions of acebutolol are related to the beta-adrenergic blocking activity. The most frequent reported clinical adverse reactions are fatigue and gastrointestinal disorders. Among the most serious adverse reactions are cardiac failure, atrioventricular block and bronchospasm. Abrupt withdrawal as for all beta-blockers may exacerbate angina pectoris and precaution is especially required in patients with ischaemic heart disease (see Section 4.4).


























































Immune system disorders




Very common




Antinuclear antibody




Uncommon




Lupus like syndrome


 


Psychiatric disorders




Common




Depression, nightmare




Not known




Pychoses, hallucinations, confusion, loss of libido*, sleep disorder


 


Nervous system disorders




Very common




Fatigue




Common




Dizziness, headache


 


Not known




Paraesthesia*, central nervous system disorder


 


Eye disorders




Common




Visual impairment




Not known




Dry eye*


 


Cardiac disorders




Not known




Cardiac failure*, atrioventricular block first degree, increase of an existing atrioventricular block, bradycardia*




Vascular disorders




Not known




Intermittent claudication, Raynaud's syndrome, cyanosis peripheral and peripheral coldness, hypotension*




Respiratory, thoracic and mediastinal disorders




Common




Dyspnoea




Not known




Pneumonitis, lung infiltration, bronchospasm


 


Gastrointestinal disorders




Very common




Gastrointestinal disorders




Common




Nausea, diarrhoea


 


Not known




Vomiting*


 


Skin and subcutaneous tissue disorders




Common




Rash




General disorders and administration site condition




Not known




Withdrawal syndrome (see Section 4.4)



4.9 Overdose



In the event of excessive bradycardia or hypotension, 1mg atropine sulphate administered intravenously should be given without delay. If this is insufficient it should be followed by a slow intravenous injection of isoprenaline (5mcg per minute) with constant monitoring until a response occurs. In severe cases of self-poisoning with circulatory collapse unresponsive to atropine and catecholamines the intravenous injection of glucagon 10-20mg may produce a dramatic improvement. Cardiac pacing may be employed if bradycardia becomes severe.



Judicious use of vasopressors, diazepam, phenytoin, lidocaine, digoxin and bronchodilators should be considered depending on the presentation of the patient. Acebutolol can be removed from blood by haemodialysis. Other symptoms and signs of over dosage include cardiogenic shock, AV block, conduction defects, pulmonary oedema, depressed level of consciousness, bronchospasm, hypoglycaemia and rarely hyperkalaemia.



5. Pharmacological Properties



5.1 Pharmacodynamic Properties



Pharmacotherapeutic group: Beta Blocker agents; Beta blocker agents, selective, ATC code: C07AB04.



Mode of action: Sectral is a beta adrenoceptor antagonist which is cardio selective, i.e. acts preferentially on beta-1 adrenergic receptors in the heart. Its principal effects are to reduce heart rate especially on exercise and to lower blood pressure in hypertensive subjects. Sectral and its active metabolite, diacetolol have anti-arrhythmic activity, the combined plasma half-life of the active drug and metabolite being 7-10 hours. Both have partial agonist activity (PAA) also known as intrinsic sympathomimetic activity (ISA). This property ensures that some degree of stimulation of beta-receptors is maintained. Under conditions of rest, this tends to balance the negative chronotropic and negative inotropic effects. Sectral blocks the effects of excessive catecholamine stimulation resulting from stress.



5.2 Pharmacokinetic Properties



After oral administration, Acebutolol is rapidly and almost completely absorbed. Absorption appears to be unaffected by the presence of food in the gut. There is rapid formation of a major equiactive metabolite, diacetolol, which possesses a similar pharmacological profile to Acebutolol. Peak plasma concentrations of active material (i.e. Acebutolol plus diacetolol) are achieved within 2-4 hours and the terminal plasma elimination half-life is around 8-10 hours. Because of biliary excretion and direct transfer across the gut wall from the systemic circulation to the gut lumen, more than 50% of an oral dose of Sectral is recovered in the faeces with Acebutolol and diacetolol in equal proportions; the rest of the dose is recovered in the urine, mainly as diacetolol. Both Acebutolol and diacetolol are hydrophilic and exhibit poor penetration of the CNS.



5.3 Preclinical Safety Data



No particulars.



6. Pharmaceutical Particulars



6.1 List Of Excipients



Lactose monohydrate



Starch Maize



Talc (E553b)



Silica colloidal anhydrous (E551)



Povidone K30



Magnesium Stearate (E572)



Tablet coat:



Opadry OY-L-28900 containing



Titanium dioxide (E171)



Lactose monohydrate



Hypromellose (E464)



Macrogol



6.2 Incompatibilities



Not applicable



6.3 Shelf Life



3 years



6.4 Special Precautions For Storage



None



6.5 Nature And Contents Of Container



Sectral is packed in aluminium foil/PVC blister strip packs of 28 tablets



6.6 Special Precautions For Disposal And Other Handling



No special requirements



7. Marketing Authorisation Holder



Sanofi-aventis



One Onslow Street



Guildford



Surrey, GU1 4YS, UK



8. Marketing Authorisation Number(S)



PL 4425/0264



9. Date Of First Authorisation/Renewal Of The Authorisation



Date of first authorisation: 16 December 1974



Date of latest renewal: 10 May 2004



10. Date Of Revision Of The Text



6th July 2011



LEGAL CLASSIFICATION


POM




Tuesday, 17 April 2012

ethosuximide


Generic Name: ethosuximide (ETH oh SUX i mide)

Brand Names: Zarontin


What is ethosuximide?

Ethosuximide is an anti-epileptic medication, also called an anticonvulsant.


Ethosuximide is used alone or in combination with other medications to treat absence seizures (also called "petit mal" seizures) in adults and children.


Ethosuximide may also be used for purposes not listed in this medication guide.


What is the most important information I should know about ethosuximide?


Ethosuximide can cause a decrease in many types of blood cells (white cells, red cells, platelets). Call your doctor at once if you have any unusual bleeding, weakness, or any signs of infection, even if these symptoms first occur after you have been using the medication for several months.

Ethosuximide may also cause liver damage. Call your doctor if you have symptoms such as loss of appetite, stomach pain, or jaundice (yellowing of the skin or eyes).


You may have thoughts about suicide while taking this medication. Your doctor will need to check you at regular visits. Do not miss any scheduled appointments.


Call your doctor at once if you have any new or worsening symptoms such as: mood or behavior changes, anxiety, depression, panic attacks, trouble sleeping, or if you feel impulsive, irritable, agitated, hostile, aggressive, restless, hyperactive (mentally or physically), or have thoughts about suicide or hurting yourself.


Do not stop using ethosuximide without first talking to your doctor, even if you feel fine. You may have increased seizures if you stop using ethosuximide suddenly. You will need to use less and less before you stop the medication completely.

Contact your doctor if your seizures get worse or you have them more often while taking ethosuximide.


Wear a medical alert tag or carry an ID card stating that you take ethosuximide. Any medical care provider who treats you should know that you take seizure medication.

What should I discuss with my healthcare provider before taking ethosuximide?


You should not use this medication if you are allergic to ethosuximide or to other seizure medications.

To make sure you can safely take ethosuximide, tell your doctor if you have any of these other conditions:



  • lupus;




  • liver disease;




  • kidney disease; or




  • a history of depression, mood problems, or suicidal thoughts or actions.



You may have thoughts about suicide while taking this medication. Tell your doctor if you have new or worsening depression or suicidal thoughts during the first several months of treatment, or whenever your dose is changed.


Your family or other caregivers should also be alert to changes in your mood or symptoms. Your doctor will need to check you at regular visits. Do not miss any scheduled appointments.


It is not known whether ethosuximide is harmful to an unborn baby, but having a seizure during pregnancy could harm both mother and baby. Tell your doctor if you are pregnant or plan to become pregnant while using this medication. Follow your doctor's instructions about taking ethosuximide while you are pregnant. If you are pregnant, your name may be listed on a pregnancy registry. This is to track the outcome of the pregnancy and to evaluate any effects of ethosuximide on the baby. Ethosuximide passes into breast milk and could harm a nursing baby. Do not use this medication without telling your doctor if you are breast-feeding a baby. Ethosuximide should not be given to a child younger than 3 years old.

How should I take ethosuximide?


Take exactly as prescribed by your doctor. Do not take in larger or smaller amounts or for longer than recommended. Follow the directions on your prescription label.


Your doctor may occasionally change your dose to make sure you get the best results.


Ethosuximide can lower blood cells that help your body fight infections. This can make it easier for you to bleed from an injury or get sick from being around others who are ill. Your blood may need to be tested often. Your kidney and liver function may also need to be tested. Visit your doctor regularly.


Call your doctor at once if you have any unusual bleeding, weakness, or any signs of infection, including flu-like symptoms. These symptoms may first develop even after you have been using the medication for several months. Do not stop using ethosuximide without first talking to your doctor, even if you feel fine. You may have increased seizures if you stop using ethosuximide suddenly. You may need to use less and less before you stop the medication completely.

Contact your doctor if your seizures get worse or you have them more often while taking ethosuximide.


Wear a medical alert tag or carry an ID card stating that you take ethosuximide. Any medical care provider who treats you should know that you take seizure medication.

Use ethosuximide regularly to get the most benefit. Get your prescription refilled before you run out of medicine completely.


Store at room temperature away from moisture and heat.

See also: Ethosuximide dosage (in more detail)

What happens if I miss a dose?


Take the missed dose as soon as you remember. Skip the missed dose if it is almost time for your next scheduled dose. Do not take extra medicine to make up the missed dose.


What happens if I overdose?


Seek emergency medical attention or call the Poison Help line at 1-800-222-1222.

Overdose symptoms may include nausea, vomiting, extreme drowsiness, and weak or shallow breathing.


What should I avoid while taking ethosuximide?


Do not drink alcohol. It can increase certain side effects of ethosuximide. This medication may impair your thinking or reactions. Be careful if you drive or do anything that requires you to be alert.

Avoid being near people who are sick or have infections. Tell your doctor at once if you develop signs of infection.


Ethosuximide side effects


Get emergency medical help if you have any of these signs of an allergic reaction: hives; difficult breathing; swelling of your face, lips, tongue, or throat.

Report any new or worsening symptoms to your doctor, such as: mood or behavior changes, anxiety, depression, panic attacks, trouble sleeping, or if you feel impulsive, irritable, agitated, hostile, aggressive, restless, hyperactive (mentally or physically), or have thoughts about suicide or hurting yourself.


Call your doctor at once if you have a serious side effect such as:

  • fever, chills, flu symptoms, sore throat, swollen glands, feeling very weak;




  • easy bruising, unusual bleeding (nose, mouth, vagina, or rectum), purple or red pinpoint spots under your skin;




  • joint pain or swelling with mild fever, muscle aches, chest pain when breathing;




  • patchy skin color, red spots, or a butterfly shaped skin rash over your cheeks and nose (worsens in sunlight);




  • skin rash, severe tingling, numbness, pain, muscle weakness;




  • confusion, hallucinations, unusual thoughts or behavior, extreme fear;




  • severe skin reaction -- fever, sore throat, swelling in your face or tongue, burning in your eyes, skin pain, followed by a red or purple skin rash that spreads (especially in the face or upper body) and causes blistering and peeling; or




  • worsening of seizures.



Less serious side effects may include:



  • upset stomach, mild nausea, stomach cramps, diarrhea, weight loss;




  • swelling in your tongue or gums;




  • headache, dizziness, drowsiness, feeling tired;




  • lack of balance or coordination; or




  • unusual vaginal bleeding.



This is not a complete list of side effects and others may occur. Call your doctor for medical advice about side effects. You may report side effects to FDA at 1-800-FDA-1088.


Ethosuximide Dosing Information


Usual Adult Dose for Seizures:

Initial dose: 500 mg (10 mL) orally daily
Maintenance dose: Dosage may be increased by small increments, for example 250 mg daily every 4 to 7 days, until optimal seizure control with minimal side effects is achieved. Dosages greater than 1.5 g per day, in divided doses, should be administered only under strict supervision of a physician.

Usual Pediatric Dose for Seizures:

3 to 6 years:
Initial dose: 250 mg (5 mL) orally daily
Maintenance dose: Dosage may be increased by small increments, for example 250 mg daily every 4 to 7 days, until optimal seizure control with minimal side effects is achieved. For most pediatric patients the optimal dose is 20 mg/kg/day in divided doses. Dosages greater than 1.5 g per day, in divided doses, should be administered only under close supervision by a physician.

> 6 to 18 years:
Initial dose: 500 mg (10 mL) orally daily
Maintenance dose: Dosage may be increased by small increments, for example 250 mg daily every 4 to 7 days, until optimal seizure control with minimal side effects is achieved. For most pediatric patients the optimal dose is 20 mg/kg/day in divided doses. Dosages greater than 1.5 g per day, in divided doses, should be administered only under close supervision by a physician.


What other drugs will affect ethosuximide?


Cold or allergy medicine, sedatives, narcotic pain medicine, sleeping pills, muscle relaxers, and medicine for depression or anxiety can add to sleepiness caused by ethosuximide. Tell your doctor if you regularly use any of these medicines, or any other seizure medication.

Before taking ethosuximide, tell your doctor about all other seizure medications you use, especially:



  • phenobarbital (Solfoton);




  • phenytoin (Dilantin); or




  • valproic acid (Depakene, Stavzor).



This list is not complete and other drugs may interact with ethosuximide. Tell your doctor about all medications you use. This includes prescription, over-the-counter, vitamin, and herbal products. Do not start a new medication without telling your doctor.



More ethosuximide resources


  • Ethosuximide Side Effects (in more detail)
  • Ethosuximide Dosage
  • Ethosuximide Use in Pregnancy & Breastfeeding
  • Drug Images
  • Ethosuximide Drug Interactions
  • Ethosuximide Support Group
  • 5 Reviews for Ethosuximide - Add your own review/rating


  • ethosuximide Advanced Consumer (Micromedex) - Includes Dosage Information

  • Ethosuximide Prescribing Information (FDA)

  • Ethosuximide Professional Patient Advice (Wolters Kluwer)

  • Ethosuximide Monograph (AHFS DI)

  • Ethosuximide MedFacts Consumer Leaflet (Wolters Kluwer)

  • Zarontin Prescribing Information (FDA)



Compare ethosuximide with other medications


  • Seizures


Where can I get more information?


  • Your pharmacist can provide more information about ethosuximide.

See also: ethosuximide side effects (in more detail)


triamcinolone Topical application



trye-am-SIN-oh-lone a-SEET-oh-nide


Commonly used brand name(s)

In the U.S.


  • Aristocort A

  • Cinolar

  • Kenalog

  • Pediaderm TA

  • Triacet

  • Triamcot

  • Triderm

  • Zytopic

In Canada


  • Aristocort C Concentrate

  • Aristocort D Dilute

  • Aristocort R Ointment Regular

  • Aristocort R Regular

  • Kenalog Cream

  • Kenalog Ointment

  • Kenalog Spray

  • Triaderm Mild Cream

  • Triaderm Mild Ointment

  • Triaderm Regular Cream

  • Triaderm Regular Ointment

  • Trianide Mild-Cream

Available Dosage Forms:


  • Cream

  • Lotion

  • Spray

  • Ointment

Therapeutic Class: Corticosteroid, Intermediate


Pharmacologic Class: Triamcinolone


Uses For triamcinolone


Triamcinolone topical is used to help relieve redness, itching, swelling, or other discomfort caused by skin conditions. triamcinolone is a corticosteroid (cortisone-like medicine or steroid).


triamcinolone is available only with your doctor's prescription.


Before Using triamcinolone


In deciding to use a medicine, the risks of taking the medicine must be weighed against the good it will do. This is a decision you and your doctor will make. For triamcinolone, the following should be considered:


Allergies


Tell your doctor if you have ever had any unusual or allergic reaction to triamcinolone or any other medicines. Also tell your health care professional if you have any other types of allergies, such as to foods, dyes, preservatives, or animals. For non-prescription products, read the label or package ingredients carefully.


Pediatric


Appropriate studies performed to date have not demonstrated pediatric-specific problems that would limit the usefulness of triamcinolone topical in the pediatric population. However, because of triamcinolone's toxicity, it should be used with caution. Children may absorb large amounts through the skin, which can cause serious side effects. If your child is using triamcinolone, follow your doctor's instructions very carefully.


Geriatric


No information is available on the relationship of age to the effects of triamcinolone topical in geriatric patients.


Interactions with Medicines


Although certain medicines should not be used together at all, in other cases two different medicines may be used together even if an interaction might occur. In these cases, your doctor may want to change the dose, or other precautions may be necessary. Tell your healthcare professional if you are taking any other prescription or nonprescription (over-the-counter [OTC]) medicine.


Interactions with Food/Tobacco/Alcohol


Certain medicines should not be used at or around the time of eating food or eating certain types of food since interactions may occur. Using alcohol or tobacco with certain medicines may also cause interactions to occur. Discuss with your healthcare professional the use of your medicine with food, alcohol, or tobacco.


Other Medical Problems


The presence of other medical problems may affect the use of triamcinolone. Make sure you tell your doctor if you have any other medical problems, especially:


  • Cushing's syndrome (adrenal gland disorder) or

  • Diabetes or

  • Hyperglycemia (high blood sugar) or

  • Intracranial hypertension (increased pressure in the head)—Use with caution. May make these conditions worse.

  • Infection of the skin at or near the place of application or

  • Large sores, broken skin, or severe skin injury at the place of application—The chance of side effects may be increased.

Proper Use of triamcinolone


It is very important that you use triamcinolone only as directed by your doctor. Do not use more of it, do not use it more often, and do not use it for a longer time than your doctor ordered. To do so may cause unwanted side effects or skin irritation.


triamcinolone is for use on the skin only. Do not get it in your eyes. Do not use it on skin areas that have cuts, scrapes, or burns. If it does get on these areas, rinse it off right away with water.


If you or your child are using the spray form on or near the face, protect your nose to avoid breathing it in and make sure that your eyes are covered.


triamcinolone should only be used for skin conditions that your doctor is treating. Check with your doctor before using it for other conditions, especially if you think that a skin infection may be present. triamcinolone should not be used to treat certain kinds of skin infections or conditions, such as severe burns.


Do not use the spray on the groin or underarms unless directed to do so by your doctor.


To use:


  • Wash your hands with soap and water before and after using triamcinolone.

  • Apply a thin layer of triamcinolone to the affected area of the skin. Rub it in gently.

  • Do not bandage or otherwise wrap the skin being treated unless directed to do so by your doctor.

  • If the medicine is applied to the diaper area of an infant, do not use tight-fitting diapers or plastic pants unless directed to do so by your doctor.

  • If your doctor ordered an occlusive dressing or airtight covering to be applied over the medicine, make sure you know how to apply it. Occlusive dressings increase the amount of medicine absorbed through your skin, so use them only as directed. If you have any questions about this, check with your doctor.

The spray form is flammable until it dries on the skin. Do not use it near heat, an open flame, or while smoking. Do not puncture, break, or burn the aerosol can.


Dosing


The dose of triamcinolone will be different for different patients. Follow your doctor's orders or the directions on the label. The following information includes only the average doses of triamcinolone. If your dose is different, do not change it unless your doctor tells you to do so.


The amount of medicine that you take depends on the strength of the medicine. Also, the number of doses you take each day, the time allowed between doses, and the length of time you take the medicine depend on the medical problem for which you are using the medicine.


  • For redness, itching, and swelling of the skin:
    • For topical dosage forms (cream, lotion, and ointment):
      • Adults—Apply to the affected area of the skin two to four times per day.

      • Children—Apply to the affected area of the skin two to four times per day.


    • For topical dosage form (aerosol spray):
      • Adults—Spray to the affected area of the skin three to four times per day.

      • Children—Spray to the affected area of the skin three to four times per day.



Missed Dose


If you miss a dose of triamcinolone, apply it as soon as possible. However, if it is almost time for your next dose, skip the missed dose and go back to your regular dosing schedule.


Storage


Store the medicine in a closed container at room temperature, away from heat, moisture, and direct light. Keep from freezing.


Store the canister at room temperature, away from heat and direct light. Do not freeze. Do not keep triamcinolone inside a car where it could be exposed to extreme heat or cold. Do not poke holes in the canister or throw it into a fire, even if the canister is empty.


Keep out of the reach of children.


Do not keep outdated medicine or medicine no longer needed.


Ask your healthcare professional how you should dispose of any medicine you do not use.


Precautions While Using triamcinolone


It is very important that your doctor check the progress of you or your child at regular visits for any problems that may be caused by triamcinolone. Blood and urine tests may be needed to check for unwanted effects.


If your or your child's symptoms do not improve within a few weeks, or if they become worse, check with your doctor.


Using too much of triamcinolone or using it for a long time may increase your risk of having adrenal gland problems. The risk is greater for children and patients who use large amounts for a long time. Talk to your doctor right away if you or your child have more than one of these symptoms while you are using triamcinolone: blurred vision; dizziness or fainting; a fast, irregular, or pounding heartbeat; increased thirst or urination; irritability; or unusual tiredness or weakness.


Stop using triamcinolone and check with your doctor right away if you or your child have a skin rash, burning, stinging, swelling, or irritation on the skin.


Do not use this medication with other corticosteroid (eg, hydrocortisone) containing products without checking with your doctor first. .


Do not use cosmetics or other skin care products on the treated areas.


triamcinolone Side Effects


Along with its needed effects, a medicine may cause some unwanted effects. Although not all of these side effects may occur, if they do occur they may need medical attention.


Check with your doctor immediately if any of the following side effects occur:


Incidence not known
  • Blistering, burning, crusting, dryness, or flaking of the skin

  • irritation

  • itching, scaling, severe redness, soreness, or swelling of the skin

  • redness and scaling around the mouth

  • thinning of the skin with easy bruising, especially when used on the face or where the skin folds together (e.g. between the fingers)

Some side effects may occur that usually do not need medical attention. These side effects may go away during treatment as your body adjusts to the medicine. Also, your health care professional may be able to tell you about ways to prevent or reduce some of these side effects. Check with your health care professional if any of the following side effects continue or are bothersome or if you have any questions about them:


Incidence not known
  • Acne or pimples

  • burning and itching of the skin with pinhead-sized red blisters

  • burning, itching, and pain in hairy areas, or pus at the root of the hair

  • increased hair growth on the forehead, back, arms, and legs

  • lightening of normal skin color

  • lightening of treated areas of dark skin

  • reddish purple lines on the arms, face, legs, trunk, or groin

  • softening of the skin

Other side effects not listed may also occur in some patients. If you notice any other effects, check with your healthcare professional.


Call your doctor for medical advice about side effects. You may report side effects to the FDA at 1-800-FDA-1088.



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