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淋巴管内皮鞘氨醇-1-磷酸受体1在心肌梗死后通过淋巴系统增强巨噬细胞清除作用。

Lymphatic endothelial sphingosine 1-phosphate receptor 1 enhances macrophage clearance via lymphatic system following myocardial infarction.

作者信息

Li Qinyu, Zhou Caixia, Zhao Kang, Duan Yunhao, Yue Jinnan, Liu Xiuxiang, Wu Jinjin, Deng Shengqiong

机构信息

Postgraduate Training Base in Shanghai Gongli Hospital, Ningxia Medical University, Ningxia, China.

Key Laboratory of Arrhythmias of the Ministry of Education of China, Research Center for Translational Medicine, Shanghai East Hospital, Tongji University School of Medicine, Shanghai, China.

出版信息

Front Cardiovasc Med. 2022 Aug 8;9:872102. doi: 10.3389/fcvm.2022.872102. eCollection 2022.

Abstract

Lymphatic endothelial cell homeostasis plays important roles in normal physiological cardiac functions, and its dysfunction significantly influences pathological cardiac remodeling after myocardial infarction (MI). Our results revealed that sphingosine 1-phosphate receptor 1 (S1pr1) expression in cardiac lymphatic endothelial cells (LECs) was sharply changed after MI. It has been shown that S1pr1 tightly controlled LEC functions and homeostasis. We thus hypothesized that lymphatic endothelial S1pr1 might be involved in post-MI cardiac remodeling. We generated LEC-conditional S1pr1 transgenic mice, in which S1pr1 expression was reduced in cardiac LECs. We performed the left anterior descending coronary artery (LAD) ligation operation to induce MI in these mice. Cardiac functions and remodeling were examined by echocardiography analysis and serial histological analysis. Meanwhile, we performed adoptive cell transfer experiments to monitor macrophage trafficking in post-MI myocardium and their draining lymphatic system. Furthermore, cell culture experiments and mechanism studies were undertaken to uncover the molecular mechanism by which LEC-S1pr1 regulated cardiac inflammation and remodeling after MI. Our results showed that S1pr1 expression significantly decreased in cardiac LECs after MI. Our experiments showed that the reduced expression of LEC-S1pr1 deteriorated cardiac function and worsened pathological cardiac remodeling after MI. Our further results demonstrated that the reduced expression of LEC-S1pr1 did not influence macrophage infiltration in an early inflammatory phase of MI, but significantly affected macrophages clearance in the later phase of MI via afferent cardiac lymphatics, and thus influenced inflammatory responses and cardiac outcome after MI. Further study showed that S1P/S1pr1 activated ERK signaling pathway and enhanced CCL2 expression, which promoted macrophage trafficking in a paracrine manner. This study reveals that cardiac lymphatic endothelial cells tightly control macrophage trafficking via lymphatic vessels in injured hearts via S1P/S1pr1/ERK/CCL2 pathway and thus regulate post-MI immune modulation and heart repair. This study highlights the importance of cardiac lymphatic vessel system in orchestrating post-MI immune responses and cardiac remodeling by regulating macrophage transit in injured hearts. Our finding implies that a feasible modulation of S1pr1 signaling in LECs might provide a promising target to resolve excessive inflammation and to ameliorate adverse cardiac remodeling after MI.

摘要

淋巴管内皮细胞稳态在正常生理心脏功能中发挥着重要作用,其功能障碍会显著影响心肌梗死后的病理性心脏重塑。我们的研究结果显示,心肌梗死后心脏淋巴管内皮细胞(LECs)中鞘氨醇-1-磷酸受体1(S1pr1)的表达发生了急剧变化。已有研究表明,S1pr1严格控制LECs的功能和稳态。因此,我们推测淋巴管内皮细胞中的S1pr1可能参与了心肌梗死后的心脏重塑过程。我们构建了LEC条件性S1pr1转基因小鼠,其心脏LECs中S1pr1的表达降低。我们对这些小鼠进行左冠状动脉前降支(LAD)结扎手术以诱导心肌梗死。通过超声心动图分析和系列组织学分析来检测心脏功能和重塑情况。同时,我们进行了过继性细胞转移实验,以监测心肌梗死后心肌及其引流淋巴系统中的巨噬细胞迁移情况。此外,我们还开展了细胞培养实验和机制研究,以揭示LEC-S1pr1调节心肌梗死后心脏炎症和重塑的分子机制。我们的研究结果表明,心肌梗死后心脏LECs中S1pr1的表达显著降低。我们的实验表明,LEC-S1pr1表达降低会使心肌梗死后的心脏功能恶化,并加重病理性心脏重塑。我们进一步的研究结果表明,LEC-S1pr1表达降低在心肌梗死的早期炎症阶段不影响巨噬细胞浸润,但在心肌梗死后期通过心脏传入淋巴管显著影响巨噬细胞的清除,从而影响心肌梗死后的炎症反应和心脏结局。进一步研究表明,S1P/S1pr1激活ERK信号通路并增强CCL2表达,以旁分泌方式促进巨噬细胞迁移。本研究揭示,心脏淋巴管内皮细胞通过S1P/S1pr1/ERK/CCL2途径在受损心脏中通过淋巴管严格控制巨噬细胞迁移,从而调节心肌梗死后的免疫调节和心脏修复。本研究强调了心脏淋巴管系统在通过调节受损心脏中的巨噬细胞转运来协调心肌梗死后的免疫反应和心脏重塑方面的重要性。我们的发现表明,对LECs中S1pr1信号进行可行的调节可能为解决过度炎症和改善心肌梗死后不良心脏重塑提供一个有前景的靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01ad/9393290/f8e387df34c2/fcvm-09-872102-g001.jpg

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