Distinct mononuclear diploid cardiac subpopulation with minimal cell-cell communications persists in embryonic and adult mammalian heart.

IF 3.9 3区 医学 Q2 MEDICINE, RESEARCH & EXPERIMENTAL Frontiers of Medicine Pub Date : 2023-10-01 Epub Date: 2023-06-09 DOI:10.1007/s11684-023-0987-9
Miaomiao Zhu, Huamin Liang, Zhe Zhang, Hao Jiang, Jingwen Pu, Xiaoyi Hang, Qian Zhou, Jiacheng Xiang, Ximiao He
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Abstract

A small proportion of mononuclear diploid cardiomyocytes (MNDCMs), with regeneration potential, could persist in adult mammalian heart. However, the heterogeneity of MNDCMs and changes during development remains to be illuminated. To this end, 12 645 cardiac cells were generated from embryonic day 17.5 and postnatal days 2 and 8 mice by single-cell RNA sequencing. Three cardiac developmental paths were identified: two switching to cardiomyocytes (CM) maturation with close CM-fibroblast (FB) communications and one maintaining MNDCM status with least CM-FB communications. Proliferative MNDCMs having interactions with macrophages and non-proliferative MNDCMs (non-pMNDCMs) with minimal cell-cell communications were identified in the third path. The non-pMNDCMs possessed distinct properties: the lowest mitochondrial metabolisms, the highest glycolysis, and high expression of Myl4 and Tnni1. Single-nucleus RNA sequencing and immunohistochemical staining further proved that the Myl4+Tnni1+ MNDCMs persisted in embryonic and adult hearts. These MNDCMs were mapped to the heart by integrating the spatial and single-cell transcriptomic data. In conclusion, a novel non-pMNDCM subpopulation with minimal cell-cell communications was unveiled, highlighting the importance of microenvironment contribution to CM fate during maturation. These findings could improve the understanding of MNDCM heterogeneity and cardiac development, thus providing new clues for approaches to effective cardiac regeneration.

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在胚胎和成年哺乳动物心脏中持续存在细胞间交流极少的独特单核二倍体心脏亚群。
一小部分具有再生潜能的单核二倍体心肌细胞(MNDCMs)可持续存在于成年哺乳动物的心脏中。然而,MNDCMs 的异质性和发育过程中的变化仍有待阐明。为此,研究人员通过单细胞 RNA 测序,从胚胎 17.5 天和出生后第 2 天和第 8 天的小鼠体内生成了 12 645 个心脏细胞。研究发现了三种心脏发育途径:两种转为心肌细胞(CM)成熟,CM-成纤维细胞(FB)之间有密切联系;一种维持 MNDCM 状态,CM-FB 之间联系最少。在第三条路径中,发现了与巨噬细胞相互作用的增殖性 MNDCM 和细胞-细胞间交流极少的非增殖性 MNDCM(非 MNDCM)。非 MNDCMs 具有独特的特性:线粒体代谢最低,糖酵解最高,Myl4 和 Tnni1 高表达。单核 RNA 测序和免疫组化染色进一步证明,Myl4+Tnni1+ MNDCMs 在胚胎和成人心脏中持续存在。通过整合空间和单细胞转录组数据,这些 MNDCMs 被绘制到了心脏中。总之,我们揭示了一种细胞-细胞间交流极少的新型非 MNDCM 亚群,凸显了微环境对成熟过程中 CM 命运的重要影响。这些发现可提高人们对 MNDCM 异质性和心脏发育的认识,从而为有效的心脏再生方法提供新的线索。
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来源期刊
Frontiers of Medicine
Frontiers of Medicine ONCOLOGYMEDICINE, RESEARCH & EXPERIMENTAL&-MEDICINE, RESEARCH & EXPERIMENTAL
CiteScore
18.30
自引率
0.00%
发文量
800
期刊介绍: Frontiers of Medicine is an international general medical journal sponsored by the Ministry of Education of China. The journal is jointly published by the Higher Education Press and Springer. Since the first issue of 2010, this journal has been indexed in PubMed/MEDLINE. Frontiers of Medicine is dedicated to publishing original research and review articles on the latest advances in clinical and basic medicine with a focus on epidemiology, traditional Chinese medicine, translational research, healthcare, public health and health policies.
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