Related Experiment Video
Updated: Jul 17, 2026

A Familial Hypercholesterolemia Human Liver Chimeric Mouse Model Using Induced Pluripotent Stem Cell-derived Hepatocytes
Published on: September 15, 2018
Inhibition of microsomal triglyceride transfer protein in familial hypercholesterolemia
Marina Cuchel1, LeAnne T Bloedon, Philippe O Szapary
1University of Pennsylvania School of Medicine, Philadelphia, USA.
Insights
BMS-201038, a microsomal triglyceride transfer protein inhibitor, significantly lowered LDL cholesterol and apolipoprotein B in homozygous familial hypercholesterolemia patients. However, it caused elevated liver enzymes and hepatic fat accumulation.
Area of Science:
- Cardiovascular Medicine
- Pharmacology
- Biochemistry
Background:
- Familial hypercholesterolemia (FH) is characterized by extremely high cholesterol levels.
- Patients with homozygous FH exhibit poor response to conventional therapies.
- Premature cardiovascular disease is a major risk in FH patients.
Purpose of the Study:
- To evaluate the safety and efficacy of BMS-201038, a microsomal triglyceride transfer protein (MTP) inhibitor.
- To assess the impact of BMS-201038 on lipid profiles in patients with homozygous FH.
- To determine the dose-response relationship of BMS-201038.
Main Methods:
- A dose-escalation study involving six patients with homozygous FH.
- Treatment with BMS-201038 at doses ranging from 0.03 to 1.0 mg/kg/day for 4 weeks each.
- Monitoring of lipid levels, safety parameters, and liver fat content via MRI.
Main Results:
- BMS-201038 was well-tolerated up to 1.0 mg/kg/day.
- Significant reductions in LDL cholesterol (50.9%) and apolipoprotein B (55.6%) were observed.
- Reduced apolipoprotein B production and increased hepatic fat accumulation were noted.
Conclusions:
- BMS-201038 effectively reduces LDL cholesterol in homozygous FH by inhibiting apolipoprotein B production.
- Therapy with BMS-201038 is associated with elevated liver aminotransferase levels.
- Hepatic fat accumulation is a significant side effect of BMS-201038 treatment.
Background:
Patients with homozygous familial hypercholesterolemia have markedly elevated cholesterol levels, which respond poorly to drug therapy, and a very high risk of premature cardiovascular disease. Inhibition of the microsomal triglyceride transfer protein may be effective in reducing cholesterol levels in these patients.
Methods:
We conducted a dose-escalation study to examine the safety, tolerability, and effects on lipid levels of BMS-201038, an inhibitor of the microsomal triglyceride transfer protein, in six patients with homozygous familial hypercholesterolemia. All lipid-lowering therapies were suspended 4 weeks before treatment. The patients received BMS-201038 at four different doses (0.03, 0.1, 0.3, and 1.0 mg per kilogram of body weight per day), each for 4 weeks, and returned for a final visit after a 4-week drug washout period. Analysis of lipid levels, safety laboratory analyses, and magnetic resonance imaging of the liver for fat content were performed throughout the study.
Results:
All patients tolerated titration to the highest dose, 1.0 mg per kilogram per day. Treatment at this dose decreased low-density lipoprotein (LDL) cholesterol levels by 50.9% and apolipoprotein B levels by 55.6% from baseline (P<0.001 for both comparisons). Kinetic studies showed a marked reduction in the production of apolipoprotein B. The most serious adverse events were elevation of liver aminotransferase levels and accumulation of hepatic fat, which at the highest dose ranged from less than 10% to more than 40%.
Conclusions:
Inhibition of the microsomal triglyceride transfer protein by BMS-201038 resulted in the reduction of LDL cholesterol levels in patients with homozygous familial hypercholesterolemia, owing to reduced production of apolipoprotein B. However, the therapy was associated with elevated liver aminotransferase levels and hepatic fat accumulation.
More Related Videos
Related Concept Videos
Lipid-Lowering Drugs: Statins and Miscellaneous Agents
Cholesterol: Significance and Regulation
Considering cholesterol and...
Pharmacogenomics: Identification of New Drug Targets
Lipid Absorption
These breakdown products bind with bile salts and lecithin to form micelles, which quickly pass between microvilli to come in close contact with the apical...
Lipid Catabolism
Atherosclerosis III: Management
