Deficiency of 5‐HT2B receptors alleviates atherosclerosis by regulating macrophage phenotype through inhibiting interferon signalling

Author:

Liu Yahan1,Wang Zhipeng1,Fang Li1,Xu Yaohua1,Zhao Beilei1,Kang Xuya1,Zhao Yanqing2,Han Jintao2,Zhang Yan13,Dong Erdan145,Wang Nanping67ORCID

Affiliation:

1. Institute of Cardiovascular Sciences, School of Basic Medical Sciences Peking University Health Science Center; State Key Laboratory of Vascular Homeostasis and Remodeling, Peking University Beijing China

2. Department of Interventional Radiology and Vascular Surgery Peking University Third Hospital Beijing China

3. Institute of Cardiovascular Diseases The first affiliated Hospital of Dalian Medical University Dalian China

4. Department of Cardiology and Institute of Vascular Medicine, Peking University Third Hospital; Research Unit of Medical Science Research Management/Basic and Clinical Research of Metabolic Cardiovascular Diseases Chinese Academy of Medical Sciences Beijing China

5. Research Center for Cardiopulmonary Rehabilitation University of Health and Rehabilitation Sciences Qingdao Hospital (Qingdao Municipal Hospital); School of Health and Life Sciences, University of Health and Rehabilitation Sciences Qingdao China

6. Wuhu Hospital East China Normal University (ECNU) Wuhu China

7. East China Normal University Health Science Center Shanghai China

Abstract

AbstractBackground and PurposeElevated levels of 5‐HT have been correlated with coronary artery disease and cardiac events, suggesting 5‐HT is a potential novel factor in the development of atherosclerotic cardiovascular disease. However, the underlying pathological mechanisms of the 5‐HT system in atherosclerosis remain unclear. The 5‐HT2B receptor (5‐HT2BR), which establishes a positive feedback loop with 5‐HT, has been identified as a contributor to pathophysiological processes in various vascular disorders. In this study, we investigated the immunological impact of 5‐HT2BR in atherosclerosis‐prone apolipoprotein E‐deficient (ApoE−/−) mice.Experimental ApproachPlasma levels of 5‐HT were measured in mice using an ELISA kit. Atherosclerotic plaque formation, macrophage infiltration and inflammatory signalling were assessed in ApoE−/− mice by employing both pharmacological inhibition and genetic deficiency of 5‐HT2BR. Inflammasome activation was elucidated using peritoneal macrophages isolated from 5‐HT2BR‐deficient mice.Key ResultsAn upregulation of 5‐HT2BR expression was observed in the aortas of ApoE−/− mice, exhibiting a strong correlation with the presence of macrophages in plaques. Atherosclerosis was attenuated in mice through pharmacological inhibition and genetic deficiency of 5‐HT2BR. Additionally, a significant reduction in atherosclerotic plaque size was achieved through bone marrow reconstitution with 5‐HT2BR‐deficient cells. 5‐HT2BR‐deficient macrophages showed attenuated interferon (IFN) signalling, NLRP3 inflammasome activation, and interleukin‐1β release. Moreover, macrophages primed with 5‐HT2BR deficiency displayed an anti‐inflammatory phenotype.Conclusion and ImplicationsThese findings support the hypothesis that 5‐HT2BR in macrophages plays a causal role in the development of atherosclerosis, revealing a novel perspective for potential therapeutic strategies in atherosclerosis‐related diseases.

Funder

Natural Science Foundation of Beijing Municipality

National Natural Science Foundation of China

Publisher

Wiley

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