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Synthesis of Monocyte-targeting Peptide Amphiphile Micelles for Imaging of Atherosclerosis
Published on: November 17, 2017
New therapy via targeting androgen receptor in monocytes/macrophages to battle atherosclerosis
Chiung-Kuei Huang1, Haiyan Pang, Lin Wang
1George Whipple Lab for Cancer Research, Departments of Pathology, Urology, Radiation Oncology, Wilmot Cancer Center, University of Rochester Medical Center, 601 Elmwood Ave, Box 626, Rochester, NY 14642. chang@urmc.rochester.edu or Lin Wang, Chawnshang Chang Sex Hormone Research Center, The Kidney and Blood Purification Center, Tianjin Institute of Urology, Tianjin Medical University, 23 Pingjiang Road, Hexi District, Tianjin, China 300211. E-mail wang.lin@medmail.com.cn.
Insights
Androgen receptor (AR) in male monocytes/macrophages promotes atherosclerosis by increasing inflammation and foam cell formation. Targeting AR with ASC-J9 may offer a new therapeutic strategy for coronary artery disease.
Area of Science:
- Cardiovascular Biology
- Molecular Medicine
- Immunology
Background:
- Male sex is associated with higher coronary artery disease risk, including atherosclerosis.
- The androgen receptor (AR) is present in atherosclerosis-relevant cells, but its role is unclear.
- AR's specific function in monocytes/macrophages, endothelial cells (ECs), and smooth muscle cells (SMCs) in atherosclerosis needs elucidation.
Purpose of the Study:
- To investigate the specific role of the androgen receptor (AR) in different cell types during atherosclerosis development.
- To determine if AR in monocytes/macrophages, ECs, or SMCs drives atherosclerotic lesion progression.
- To explore the therapeutic potential of targeting AR in atherosclerosis.
Main Methods:
- Generated cell-specific AR knockout (ARKO) mice (monocyte/macrophage, EC, SMC ARKO) by crossing with low-density lipoprotein receptor-deficient (LDLR(-/-)) mice.
- Assessed atherosclerosis development in ARKO-LDLR(-/-) mice compared to wild-type LDLR(-/-) controls.
- Investigated molecular mechanisms and tested AR degradation enhancer ASC-J9 efficacy.
Main Results:
- Monocyte/macrophage ARKO-LDLR(-/-) mice exhibited significantly reduced atherosclerosis.
- No significant differences in atherosclerosis were observed in EC-ARKO-LDLR(-/-) and SMC-ARKO-LDLR(-/-) mice.
- AR in monocytes/macrophages upregulates inflammatory molecules, promoting cell migration, adhesion, and foam cell formation. ASC-J9 treatment mimicked AR knockout effects.
Conclusions:
- Androgen receptor (AR) in monocytes/macrophages plays a critical role in promoting atherosclerosis.
- Targeting AR in monocytes/macrophages, for example with ASC-J9, presents a promising therapeutic avenue for atherosclerosis.
- AR's role in ECs and SMCs appears less significant in this context.
Abstract:
The male sex has a higher risk to develop coronary artery diseases, including atherosclerosis. The androgen receptor (AR) is expressed in several atherosclerosis-associated cell types, including monocytes/macrophages, endothelial cells (ECs), and smooth muscle cells (SMCs), but its pathophysiological role in each cell type during the development of atherosclerotic lesions remains unclear. Using the Cre-loxP system, we selectively knocked out AR in these 3 cell types and the resultant AR knockout (ARKO) mice, monocyte/macrophage ARKO, EC-ARKO, and SMC-ARKO, were then crossed with the low-density lipoprotein receptor (LDLR) deficient (LDLR(-/-)) mice to develop monocyte/macrophage ARKO-LDLR(-/-), EC-ARKO-LDLR(-/-), and SMC-ARKO-LDLR(-/-) mice for the study of atherosclerosis. The results showed that the monocyte/macrophage ARKO-LDLR(-/-) mice had reduced atherosclerosis compared with the wild-type-LDLR(-/-) control mice. However, no significant difference was detected in EC-ARKO-LDLR(-/-) and SMC-ARKO-LDLR(-/-) mice compared with wild-type-LDLR(-/-) mice, suggesting that the AR in monocytes/macrophages, and not in ECs and SMCs, plays a major role to promote atherosclerosis. Molecular mechanism dissection suggested that AR in monocytes/macrophages upregulated the tumor necrosis factor-α, integrin β2, and lectin-type oxidized LDL receptor 1 molecules that are involved in 3 major inflammation-related processes in atherosclerosis, including monocytes/macrophages migration and adhesion to human umbilical vein ECs, and subsequent foam cell formation. Targeting AR via the AR degradation enhancer, ASC-J9, in wild-type-LDLR(-/-) mice showed similar effects as seen in monocyte/macrophage ARKO-LDLR(-/-) mice with little influence on lipid profile. In conclusion, the AR in monocytes/macrophages plays key roles in atherosclerosis and targeting AR with ASC-J9 may represent a new potential therapeutic approach to battle atherosclerosis.
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