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哺乳动物原肠胚形成过程中细胞迁移与心脏命运决定的早期协调

Early coordination of cell migration and cardiac fate determination during mammalian gastrulation.

作者信息

Abukar Shayma, Embacher Peter A, Ciccarelli Alessandro, Varsani-Brown Sunita, North Isabel G W, Dean Jamie A, Briscoe James, Ivanovitch Kenzo

机构信息

Developmental Biology and Cancer Department, Institute of Child Health, University College London, 30 Guilford Street, London, WC1N 1EH, UK.

Institute of Cardiovascular Science, University College London, Gower Street, London, WC1E 6BT, UK.

出版信息

EMBO J. 2025 May 13. doi: 10.1038/s44318-025-00441-0.

Abstract

During gastrulation, mesodermal cells derived from distinct regions are destined to acquire specific cardiac fates after undergoing complex migratory movements. Here, we used light-sheet imaging of live mouse embryos between gastrulation and heart tube formation to track mesodermal cells and to reconstruct lineage trees and 3D migration paths for up to five cell divisions. We found independent progenitors emerging at specific times, contributing exclusively to left ventricle/atrioventricular canal (LV/AVC) or atrial myocytes. LV/AVC progenitors differentiated early to form the cardiac crescent, while atrial progenitors later generated the heart tube's Nr2f2+ inflow tract during morphogenesis. We also identified short-lived multipotent progenitors with broad potential, illustrating early developmental plasticity. Descendants of multipotent progenitors displayed greater dispersion and more diverse migratory trajectories within the anterior mesoderm than the progeny of uni-fated progenitors. Progenitors contributing to extraembryonic mesoderm (ExEm) exhibited the fastest and most dispersed migrations. In contrast, those giving rise to endocardial, LV/AVC, and pericardial cells showed a more gradual divergence, with late-stage behavioural shifts: endocardial cells increased in speed, while pericardial cells slowed down in comparison to LV/AVC cells. Together, these data reveal patterns of individual cell directionality and cardiac fate allocation within the seemingly unorganised migratory pattern of mesoderm cells.

摘要

在原肠胚形成过程中,源自不同区域的中胚层细胞在经历复杂的迁移运动后,注定会获得特定的心脏命运。在此,我们利用原肠胚形成期至心脏管形成期的活小鼠胚胎的光片成像技术,追踪中胚层细胞,并重建了多达五个细胞分裂周期的谱系树和三维迁移路径。我们发现特定时间出现的独立祖细胞,它们专门分化为左心室/房室管(LV/AVC)或心房肌细胞。LV/AVC祖细胞早期分化形成心脏新月,而心房祖细胞在形态发生过程中后来产生心脏管的Nr2f2+流入道。我们还鉴定出具有广泛潜能的短命多能祖细胞,这说明了早期发育的可塑性。与单能祖细胞的后代相比,多能祖细胞的后代在前中胚层内表现出更大的分散性和更多样化的迁移轨迹。贡献于胚外中胚层(ExEm)的祖细胞表现出最快且最分散的迁移。相比之下,那些产生心内膜、LV/AVC和心包细胞的祖细胞表现出更渐进的分化,并伴有后期行为转变:与LV/AVC细胞相比,心内膜细胞速度增加,而心包细胞速度减慢。总之,这些数据揭示了中胚层细胞看似无序的迁移模式中单个细胞的方向性模式和心脏命运分配情况。

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