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Updated: Aug 22, 2026

Enrichment of Mammalian Tissues and Xenopus Oocytes with Cholesterol
Published on: March 25, 2020
[Cholesterol metabolism modulators and the future of atherosclerosis therapy]
Svetlana Morozova1, Isabelle Suc-Royer, Johan Auwerx
1Fournier Pharma, Département Biologie exploratoire, 50, rue de Dijon, 21121 Daix, France. smorozova@aol.com
Insights
New therapeutic targets are being investigated to combat atherosclerosis, a leading cause of death. These novel approaches aim to lower cholesterol or directly impact vascular wall health, offering improved cardiovascular disease treatment.
Area of Science:
- Biochemistry
- Cardiovascular Medicine
- Pharmacology
Context:
- Atherosclerosis, driven by lipid accumulation, remains a primary cause of mortality despite statin therapies.
- Hypercholesterolemia is a significant risk factor, necessitating advanced treatment strategies.
- Current treatments focus on cholesterol reduction, but cardiovascular diseases persist as a leading cause of death.
Purpose:
- To explore novel molecular targets for improved atherosclerosis treatment.
- To identify therapeutic strategies that either lower blood cholesterol or exert direct anti-atherosclerotic effects.
- To reduce mortality associated with cardiovascular diseases.
Summary:
- Investigational drugs target cholesterol synthesis, absorption, and lipoprotein secretion to lower lipid levels.
- Therapies aim to reduce vascular wall inflammation by modulating adhesion molecules and chemoattractant proteins.
- Strategies include enhancing ATP-binding cassette A1 protein and inhibiting ACAT1 to prevent foam cell formation.
- Cholesterol ester transfer protein inhibitors are being developed to increase high-density lipoprotein cholesterol, a marker of reduced cardiovascular risk.
Impact:
- Development of new drug classes targeting diverse pathways in atherosclerosis treatment.
- Potential to significantly reduce cardiovascular mortality by addressing unmet needs in disease management.
- Advancement of preclinical and clinical research in novel atherosclerosis therapies.
Abstract:
Atherosclerosis is a disease characterized by lipid accumulation in the vascular wall leading to myocardial infarction or stroke. Hypercholesterolemia is an important risk factor and current treatments are largely based on cholesterol lowering. In spite of proven efficacy of existing drugs, like statins, cardiovascular diseases still remain the most common cause of death in industrialised countries. Many new molecular targets are being studied to improve atherosclerosis treatment and reduce the number of deaths. The action on these targets could lead to a decrease of blood cholesterol levels or produce a direct anti-atherosclerotic effect on the vascular wall. A cholesterol lowering effect could be achieved by reducing cholesterol synthesis (squalene synthase inhibitors), intestinal cholesterol absorption as well as intestinal and liver lipoprotein secretion (microsomal transfer protein inhibitors, acyl-coenzyme A-cholesterol acyltransferase inhibitors) or by increasing fecal excretion of bile acids (ileal sodium-dependent bile acid transporter inhibitors). An anti-atherosclerotic effect on the vascular wall could be achieved by reducing the inflammation via activation of peroxisome proliferator activated receptors, or, more particularly, could consist of decreased expression of adhesion molecules and chemoattractant proteins. Increasing the adenosine triphosphate-binding cassette A1 protein and inhibiting acyl-coenzyme A :cholesterol acyltransferase 1 activity could slow down formation of foam cells, which are a hallmark of atherosclerosis. Finally, the cholesterol fraction carried by high density lipoproteins, which is inversely correlated to cardiovascular risk, could be increased by cholesterol ester transfer protein inhibitors. All of these new classes of compounds are currently studied by pharmaceutical companies and are in different phases of development (preclinical or clinical).
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