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Updated: Nov 21, 2025

Cholesterol Efflux Assay
Published on: March 6, 2012
Testosterone stimulates cholesterol clearance from human macrophages by activating LXRα
Elizabeth L Kilby1, Daniel M Kelly2, T Hugh Jones3
1Department of Oncology and Metabolism, Medical School, The University of Sheffield, Sheffield, UK.
Insights
Testosterone enhances cholesterol clearance in macrophages by activating liver X receptor (LXRα) through androgen receptors. This mechanism may explain testosterone's protective cardiovascular effects.
Area of Science:
- Endocrinology
- Cardiovascular Biology
- Molecular Biology
Background:
- Low testosterone is linked to increased cardiovascular events and mortality.
- Testosterone influences cardiovascular risk factors like cholesterol, endothelial dysfunction, and inflammation.
- The anti-atherogenic mechanism of testosterone is not fully understood.
Purpose of the Study:
- To investigate if testosterone reduces atherosclerosis by promoting macrophage cholesterol clearance.
- To determine if testosterone activates liver X receptor alpha (LXRα) in this process.
Main Methods:
- Human THP-1 cells differentiated into macrophages were treated with testosterone.
- Gene and protein expression of LXRα and its targets (APOE, ABCA1, SREBF1, FAS) were analyzed.
- Cholesterol clearance and ABCA1 translocation were measured, with and without receptor blockade.
Main Results:
- Testosterone increased LXRα, APOE, ABCA1, SREBF1, and FAS expression.
- These effects were blocked by androgen receptor and LXR antagonism.
- Testosterone stimulated macrophage cholesterol clearance and ABCA1 membrane translocation.
Conclusions:
- Testosterone promotes cholesterol clearance in macrophages via androgen receptor-dependent LXRα activation.
- This pathway may contribute to the observed anti-atherogenic effects of testosterone in clinical settings.
Aims:
Low testosterone in men is associated with increased cardiovascular events and mortality. Testosterone has beneficial effects on several cardiovascular risk factors including cholesterol, endothelial dysfunction and inflammation as key mediators of atherosclerosis. Although evidence suggests testosterone is anti-atherogenic, its mechanism of action is unknown. The present study investigates whether testosterone exerts anti-atherogenic effects by stimulating cholesterol clearance from macrophages via activation of liver X receptor (LXRα), a nuclear master regulator of cellular cholesterol homeostasis, lipid regulation, and inflammation.
Main Methods:
Using human monocyte THP-1 cells differentiated into macrophages, the effect of testosterone (1-10 nM) treatment (24-72 h) on the expression of LXRα and LXR- targets apolipoprotein E (APOE), ATP-binding cassette transporter A1 (ABCA1), sterol regulatory element-binding transcription factor 1 (SREBF1) and fatty acid synthase (FAS), was investigated via qPCR and western blotting, with or without androgen receptor blockade with flutamide or LXR antagonism with CPPSS-50. Cholesterol clearance was measured by monitoring fluorescent dehydroergosterol (DHE) cellular clearance and ABCA1 cellular translocation was observed via immunocytochemistry in testosterone treated macrophages.
Key Findings:
Testosterone increased mRNA and protein expression of LXRα, APOE, ABCA1, SREBF1 and FAS. These effects were blocked by flutamide and independently by LXR antagonism with CPPSS-50. Furthermore testosterone stimulated cholesterol clearance from the macrophages and promoted the translocation of ABCA1 toward the cell membrane.
Significance:
Testosterone acts via androgen receptor-dependent pathways to stimulate LXRα and downstream targets to induce cholesterol clearance in human macrophages. This may, in part, explain the anti-atherogenic effects of testosterone frequently seen clinically.
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