Testosterone Protects Against Atherosclerosis in Male Mice by Targeting Thymic Epithelial Cells-Brief Report

Anna S Wilhelmson1, Marta Lantero Rodriguez1, Elin Svedlund Eriksson1

  • 1From the Wallenberg Laboratory for Cardiovascular and Metabolic Research, Institute of Medicine (A.S.W., M.L.R., E.S.E., I.J., P.F., J.B.F., A.T.).

Abstract

Insights

Testosterone deficiency increases atherosclerosis in male mice by impacting T cells. The thymus, specifically thymic epithelial cells, plays a crucial role in this process, suggesting new therapeutic targets.

Area of Science:

  • Endocrinology
  • Immunology
  • Cardiovascular Science

Background:

  • Androgen deprivation therapy is linked to cardiovascular risk.
  • Testosterone's protective role against atherosclerosis is known, but the target cell is unclear.
  • T cells and the androgen receptor (AR) influence thymus size and atherosclerosis.

Purpose of the Study:

  • To test if testosterone deficiency-induced atherosclerosis in male mice is T-cell dependent.
  • To investigate if depleting the AR in thymic epithelial cells increases atherosclerosis.

Main Methods:

  • Castration of atherosclerosis-prone apoE-/- mice and T-cell depletion using anti-CD3 antibody.
  • Generation of epithelial cell-specific AR knockout (E-ARKO) mice on apoE-/- background.
  • Prepubertal thymectomy in E-ARKO apoE-/- mice.

Main Results:

  • Castration increased atherosclerotic lesions; T-cell depletion abolished this effect.
  • E-ARKO mice exhibited increased thymus weight and significantly higher atherosclerosis.
  • Thymectomy prevented atherosclerosis in E-ARKO apoE-/- mice, implicating the thymus.

Conclusions:

  • Atherogenesis from testosterone/AR deficiency is thymus- and T-cell dependent in male mice.
  • Thymic epithelial cells are likely targets for testosterone's antiatherogenic effects.
  • Findings may inform safer prostate cancer endocrine treatments.

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