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单细胞转录组学确定HIF1A为减轻心脏移植后急性排斥反应的一个靶点。

Single-cell transcriptomic identified HIF1A as a target for attenuating acute rejection after heart transplantation.

作者信息

Chang Yuan, Li Xiangjie, Cheng Qi, Hu Yiqing, Chen Xiao, Hua Xiumeng, Fan Xuexin, Tao Menghao, Song Jiangping, Hu Shengshou

机构信息

Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430000, China.

The Cardiomyopathy Research Group at Fuwai Hospital, State Key Laboratory of Cardiovascular Disease, National Center for Cardiovascular Diseases, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, 100000, China.

出版信息

Basic Res Cardiol. 2021 Dec 6;116(1):64. doi: 10.1007/s00395-021-00904-5.

Abstract

Acute rejection (AR) is an important contributor to graft failure, which remains a leading cause of death after heart transplantation (HTX). The regulation of immune metabolism has become a new hotspot in the development of immunosuppressive drugs. In this study, Increased glucose metabolism of cardiac macrophages was found in patients with AR. To find new therapeutic targets of immune metabolism regulation for AR, CD45 immune cells extracted from murine isografts, allografts, and untransplanted donor hearts were explored by single-cell RNA sequencing. Total 20 immune cell subtypes were identified among 46,040 cells. The function of immune cells in AR were illustrated simultaneously. Cardiac resident macrophages were substantially replaced by monocytes and proinflammatory macrophages during AR. Monocytes/macrophages in AR allograft were more active in antigen presentation and inflammatory recruitment ability, and glycolysis. Based on transcription factor regulation analysis, we found that the increase of glycolysis in monocytes/macrophages was mainly regulated by HIF1A. Inhibition of HIF1A could alleviate inflammatory cells infiltration in AR. To find out the effect of HIF1A on AR, CD45 immune cells extracted from allografts after HIF1A inhibitor treatment were explored by single-cell RNA sequencing. HIF1A inhibitor could reduce the antigen presenting ability and pro-inflammatory ability of macrophages, and reduce the infiltration of Cd4+ and Cd8a+ T cells in AR. The expression of Hif1α in AR monocytes/macrophages was regulated by pyruvate kinase 2. Higher expression of HIF1A in macrophages was also detected in human hearts with AR. These indicated HIF1A may serve as a potential target for attenuating AR.

摘要

急性排斥反应(AR)是导致移植物功能衰竭的重要因素,而移植物功能衰竭仍是心脏移植(HTX)后死亡的主要原因。免疫代谢的调控已成为免疫抑制药物研发的新热点。在本研究中,发现AR患者心脏巨噬细胞的葡萄糖代谢增加。为了寻找AR免疫代谢调控的新治疗靶点,通过单细胞RNA测序对从小鼠同基因移植物、异基因移植物和未移植的供体心脏中提取的CD45免疫细胞进行了探索。在46040个细胞中总共鉴定出20种免疫细胞亚型。同时阐明了AR中免疫细胞的功能。在AR期间,心脏驻留巨噬细胞被单核细胞和促炎巨噬细胞大量取代。AR异基因移植物中的单核细胞/巨噬细胞在抗原呈递、炎症募集能力和糖酵解方面更活跃。基于转录因子调控分析,我们发现单核细胞/巨噬细胞中糖酵解的增加主要受HIF1A调控。抑制HIF1A可减轻AR中炎症细胞的浸润。为了探究HIF1A对AR的影响,通过单细胞RNA测序对HIF1A抑制剂处理后从异基因移植物中提取的CD45免疫细胞进行了探索。HIF1A抑制剂可降低巨噬细胞的抗原呈递能力和促炎能力,并减少AR中Cd4+和Cd8a+ T细胞的浸润。AR单核细胞/巨噬细胞中Hif1α的表达受丙酮酸激酶2调控。在患有AR的人类心脏中也检测到巨噬细胞中HIF1A的表达较高。这些表明HIF1A可能是减轻AR的潜在靶点。

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