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细胞片层的交叉多层排列。

Crisscross multilayering of cell sheets.

作者信息

Sarkar Trinish, Yashunsky Victor, Brézin Louis, Blanch Mercader Carles, Aryaksama Thibault, Lacroix Mathilde, Risler Thomas, Joanny Jean-François, Silberzan Pascal

机构信息

Laboratoire PhysicoChimie Curie UMR168, Institut Curie, Paris Sciences et Lettres, Centre National de la Recherche Scientifique, Sorbonne Université, 11 Rue Pierre et Marie Curie, 75248 Paris, France.

Department of Solar Energy and Environmental Physics, The Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Midreshet Ben-Gurion, Negev, 84990, Israel.

出版信息

PNAS Nexus. 2023 Feb 3;2(3):pgad034. doi: 10.1093/pnasnexus/pgad034. eCollection 2023 Mar.

Abstract

Hydrostatic skeletons such as the Hydra's consist of two stacked layers of muscle cells perpendicularly oriented. In vivo, these bilayers first assemble, and then the muscle fibers of both layers develop and organize with this crisscross orientation. In the present work, we identify an alternative mechanism of crisscross bilayering of myoblasts in vitro, which results from the prior local organization of these active cells in the initial monolayer. The myoblast sheet can be described as a contractile active nematic in which, as expected, most of the +1/2 topological defects associated with this nematic order self-propel. However, as a result of the production of extracellular matrix (ECM) by the cells, a subpopulation of these comet-like defects does not show any self-propulsion. Perpendicular bilayering occurs at these stationary defects. Cells located at the head of these defects converge toward their core where they accumulate until they start migrating on top of the tail of the first layer, while the tail cells migrate in the opposite direction under the head. Since the cells keep their initial orientations, the two stacked layers end up perpendicularly oriented. This concerted process leading to a crisscross bilayering is mediated by the secretion of ECM.

摘要

像水螅的静水骨骼由两层垂直排列的堆叠肌肉细胞组成。在体内,这些双层结构首先组装,然后两层的肌肉纤维以这种交叉取向发育并组织起来。在本研究中,我们确定了体外成肌细胞交叉双层化的另一种机制,这是由这些活跃细胞在初始单层中的先前局部组织导致的。成肌细胞片可以被描述为一种收缩性活性向列相,其中,正如预期的那样,与这种向列相序相关的大多数 +1/2 拓扑缺陷会自行推进。然而,由于细胞产生细胞外基质(ECM),这些彗星状缺陷的一个亚群没有表现出任何自行推进。垂直双层化发生在这些静止缺陷处。位于这些缺陷头部的细胞向其核心聚集,在那里积累,直到它们开始在第一层尾部上方迁移,而尾部细胞则在头部下方沿相反方向迁移。由于细胞保持其初始取向,最终两层堆叠垂直取向。这种导致交叉双层化的协同过程是由 ECM 的分泌介导的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed53/10019763/25b38162e564/pgad034f1.jpg

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