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空间组织的细胞群落形成发育中的人类心脏
作者:小柯机器人 发布时间:2024/3/16 14:08:53

美国加州大学Neil C. Chi和Quan Zhu共同合作,近期取得重要工作进展。他们研究揭示了空间组织的细胞群落形成发育中的人类心脏。相关研究成果2024年3月13日在线发表于《自然》杂志上。

据介绍,心脏是最早发育的器官,它的功能高度依赖于它的形状。然而,不同的心脏细胞类型如何在空间上协调以创建对心脏功能至关重要的复杂形态结构仍不清楚。

研究人员将单细胞RNA测序与高分辨率多重误差荧光原位杂交相结合,以确定发育成人类心脏的细胞类型。这种方法还提供了单个细胞的空间映射,从而能够将它们的组织照射到形成不同心脏结构的细胞群落中。研究人员发现,这些心脏细胞类型中的许多进一步被指定为特定群落独有的亚群,这些亚群根据细胞生态系统和解剖区域支持其特化。特别是,心室心肌细胞亚群在整个心室壁上表现出出乎意料的复杂层状组织,并与其它细胞亚群一起形成了几个细胞群落。使用体内条件遗传小鼠模型和体外人类多能干细胞系统探究这些群落内的细胞-细胞相互作用,揭示了在心室壁形态发生过程中协调心脏细胞亚群空间组织的多细胞信号通路。

总之,这些关于构建和重塑人类心脏的细胞群体相互作用和心脏细胞类型特化的详细发现,为结构性心脏疾病和复杂多细胞组织工程用于人类心脏修复提供了新的见解。

附:英文原文

Title: Spatially organized cellular communities form the developing human heart

Author: Farah, Elie N., Hu, Robert K., Kern, Colin, Zhang, Qingquan, Lu, Ting-Yu, Ma, Qixuan, Tran, Shaina, Zhang, Bo, Carlin, Daniel, Monell, Alexander, Blair, Andrew P., Wang, Zilu, Eschbach, Jacqueline, Li, Bin, Destici, Eugin, Ren, Bing, Evans, Sylvia M., Chen, Shaochen, Zhu, Quan, Chi, Neil C.

Issue&Volume: 2024-03-13

Abstract: The heart, which is the first organ to develop, is highly dependent on its form to function1,2. However, how diverse cardiac cell types spatially coordinate to create the complex morphological structures that are crucial for heart function remains unclear. Here we integrated single-cell RNA-sequencing with high-resolution multiplexed error-robust fluorescence in situ hybridization to resolve the identity of the cardiac cell types that develop the human heart. This approach also provided a spatial mapping of individual cells that enables illumination of their organization into cellular communities that form distinct cardiac structures. We discovered that many of these cardiac cell types further specified into subpopulations exclusive to specific communities, which support their specialization according to the cellular ecosystem and anatomical region. In particular, ventricular cardiomyocyte subpopulations displayed an unexpected complex laminar organization across the ventricular wall and formed, with other cell subpopulations, several cellular communities. Interrogating cell–cell interactions within these communities using in vivo conditional genetic mouse models and in vitro human pluripotent stem cell systems revealed multicellular signalling pathways that orchestrate the spatial organization of cardiac cell subpopulations during ventricular wall morphogenesis. These detailed findings into the cellular social interactions and specialization of cardiac cell types constructing and remodelling the human heart offer new insights into structural heart diseases and the engineering of complex multicellular tissues for human heart repair.

DOI: 10.1038/s41586-024-07171-z

Source: https://www.nature.com/articles/s41586-024-07171-z

期刊信息

Nature:《自然》,创刊于1869年。隶属于施普林格·自然出版集团,最新IF:69.504
官方网址:http://www.nature.com/
投稿链接:http://www.nature.com/authors/submit_manuscript.html