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Evaluation of liver function in type 2 diabetic patients during clinical trials: evidence that rosiglitazone does not
Harold E Lebovitz1, Margaret Kreider, Martin I Freed
1State University of New York, Brooklyn, New York 11203, USA. hlebovitz@attglobal.net
Objective:
Troglitazone treatment has been associated with idiosyncratic hepatic reaction leading to hepatic failure and death in some patients. This raises questions regarding whether all thiazolidinediones or peroxisomal proliferator-activated receptor-gamma (PPAR-gamma) agonists are hepatotoxic and whether data from clinical trials are adequate to detect a signal of potentially serious drug-related hepatotoxicity. The purpose of this study was to assess whether the idiosyncratic liver toxicity reported with troglitazone is molecule-specific or a thiazolidinedione class effect, based on liver enzyme data collected prospectively during phase 2/3 clinical trials with rosiglitazone, a new, potent, and specific member of the thiazolidinedione class.
Research Design And Methods:
This is an analysis of liver function in type 2 diabetic patients at baseline and serially in 13 double-blind, 2 open-label active-controlled, and 7 open-label extension studies of rosiglitazone treatment conducted in outpatient centers throughout North America and Europe. The study comprised > 6,000 patients aged 30-80 years with type 2 diabetes. Patients underwent baseline liver function studies and were excluded from clinical trials if they had an alanine aminotransferase (ALT), aspartate aminotransferase (AST), or alkaline phosphatase value 2.5 times greater than the upper limit of the reference range. The main outcome measures were liver enzyme levels, which were assessed at screening, at baseline, and every 4 weeks for the first 3 months of treatment and at 6- to 12-week intervals thereafter. Patients with at least one on-therapy ALT value >3 times the upper limit of the reference range were identified, and their case records examined in detail.
Results:
At baseline, 5.6% of the patients with type 2 diabetes (mean HbA(1c) 8.5-9.0%) had serum ALT values between 1.0 and 2.5 times the upper limit of the reference range. On antidiabetic therapy, most of those patients ( approximately 83%) had a decrease in ALT values, many into the normal range. The percentages of all patients with an on-therapy ALT value >3 times the upper limit of the reference range during double-blind and open-label treatment were as follows: rosiglitazone-treated 0.32%, placebo-treated 0.17%, and sulfonylurea-, metformin-, or insulin-treated 0.40%. The respective rates of ALT values >3 times the upper limit of the reference range per 100 person-years of exposure were 0.29, 0.59, and 0.64.
Conclusions:
No evidence of hepatotoxic effects was observed in studies that involved 5,006 patients taking rosiglitazone as monotherapy or combination therapy for 5,508 person-years. This is in keeping with hepatic data from clinical trials of another member of the class, pioglitazone, and in contrast to the clear evidence of hepatotoxic effects observed during the troglitazone clinical trial program. These findings suggest that the idiosyncratic liver toxicity observed with troglitazone is unlikely to be a thiazolidinedione or a PPAR-gamma agonist class effect. Poorly controlled patients with type 2 diabetes may have moderate elevations of serum ALT that will decrease with improved glycemic control during treatment with rosiglitazone or other antihyperglycemic agents.
Insights
Troglitazone
Area of Science:
- Hepatology
- Pharmacology
- Endocrinology
Background:
- Troglitazone, a thiazolidinedione, has been linked to severe liver injury, raising concerns about class-wide hepatotoxicity.
- Peroxisome proliferator-activated receptor-gamma (PPAR-gamma) agonists are a class of drugs with potential liver effects.
- Assessing drug-induced liver injury signals in clinical trials is crucial for patient safety.
Purpose of the Study:
- To determine if the liver toxicity associated with troglitazone is specific to the molecule or a broader thiazolidinedione class effect.
- To evaluate the safety of rosiglitazone, a PPAR-gamma agonist, regarding hepatotoxicity.
- To assess the adequacy of clinical trial data in detecting serious drug-related hepatotoxicity.
Main Methods:
- Prospective analysis of liver enzyme data from over 6,000 patients with type 2 diabetes in clinical trials of rosiglitazone.
- Patients with elevated baseline liver enzymes (ALT, AST, alkaline phosphatase > 2.5x ULN) were excluded.
- Liver function was monitored serially throughout treatment, with detailed examination of cases showing ALT > 3x ULN.
Main Results:
- At baseline, 5.6% of patients had ALT values between 1.0 and 2.5x ULN; most showed improvement with antidiabetic therapy.
- The incidence of ALT > 3x ULN was low: 0.32% in rosiglitazone-treated patients, 0.17% in placebo, and 0.40% in other antidiabetic agents.
- Rates of ALT > 3x ULN per 100 person-years were 0.29 for rosiglitazone, 0.59 for placebo, and 0.64 for comparators.
Conclusions:
- No evidence of hepatotoxicity was observed in 5,006 patients treated with rosiglitazone over 5,508 person-years.
- These findings contrast with troglitazone's known hepatotoxicity, suggesting the issue is not a class effect of thiazolidinediones or PPAR-gamma agonists.
- Elevated ALT in poorly controlled type 2 diabetes patients may decrease with improved glycemic control from rosiglitazone or other agents.