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肠道和视杯类器官作为揭示自组织形态发生机制的工具。

Intestinal and optic-cup organoids as tools for unveiling mechanics of self-organizing morphogenesis.

作者信息

Nath Sristilekha, Toda Satoshi, Okuda Satoru

机构信息

WPI-Nano Life Science Institute (NanoLSI), Kanazawa University, Kanazawa, Ishikawa 920-1192, Japan.

出版信息

Biophys Physicobiol. 2022 Dec 21;19:e190048. doi: 10.2142/biophysico.bppb-v19.0048. eCollection 2022.

Abstract

Organoid, an organ-like tissue reproduced in a dish, has specialized, functional structures in three-dimensional (3D) space. Organoid development replicates the self-organizing process of each tissue development during embryogenesis but does not necessarily require external tissues, illustrating the autonomy of multicellular systems. Herein, we review the developmental processes of epithelial organoids, namely, the intestine, and optic-cup, with a focus on their mechanical aspects. Recent organoid studies have advanced our understanding of the mechanisms of 3D tissue deformation, including appropriate modes of deformation and factors controlling them. In addition, the autonomous nature of organoid development has also allowed us to access the stepwise mechanisms of deformation as organoids proceed through distinct stages of development. Altogether, we discuss the potential of organoids in unveiling the autonomy of multicellular self-organization from a mechanical point of view. This review article is an extended version of the Japanese article, Mechanics in Self-organizing Organoid Morphogenesis, published in SEIBUTSU BUTSURI Vol. 60, p.31-36 (2020).

摘要

类器官是在培养皿中重现的类似器官的组织,在三维(3D)空间中具有特化的功能结构。类器官的发育复制了胚胎发生过程中每个组织发育的自组织过程,但不一定需要外部组织,这说明了多细胞系统的自主性。在此,我们回顾上皮类器官(即肠道和视杯)的发育过程,重点关注其力学方面。最近的类器官研究加深了我们对3D组织变形机制的理解,包括适当的变形模式及其控制因素。此外,类器官发育的自主性还使我们能够了解类器官在经历不同发育阶段时变形的逐步机制。总之,我们从力学角度讨论类器官在揭示多细胞自组织自主性方面的潜力。这篇综述文章是发表于《生物物理》第60卷第31 - 36页(2020年)的日文文章《自组织类器官形态发生中的力学》的扩展版本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1776/10040261/78c7fa62269e/19_e190048-g001.jpg

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