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组织在形态发生过程中的相互作用。

Tissue interplay during morphogenesis.

机构信息

Mechanisms of Morphogenesis Lab, Gulbenkian Institute of Science (IGC), Oeiras, Portugal.

Mechanisms of Morphogenesis Lab, Gulbenkian Institute of Science (IGC), Oeiras, Portugal.

出版信息

Semin Cell Dev Biol. 2023 Sep 30;147:12-23. doi: 10.1016/j.semcdb.2023.03.010. Epub 2023 Mar 29.

Abstract

The process by which biological systems such as cells, tissues and organisms acquire shape has been named as morphogenesis and it is central to a plethora of biological contexts including embryo development, wound healing, or even cancer. Morphogenesis relies in both self-organising properties of the system and in environmental inputs (biochemical and biophysical). The classical view of morphogenesis is based on the study of external biochemical molecules, such as morphogens. However, recent studies are establishing that the mechanical environment is also used by cells to communicate within tissues, suggesting that this mechanical crosstalk is essential to synchronise morphogenetic transitions and self-organisation. In this article we discuss how tissue interaction drive robust morphogenesis, starting from a classical biochemical view, to finalise with more recent advances on how the biophysical properties of a tissue feedback with their surroundings to allow form acquisition. We also comment on how in silico models aid to integrate and predict changes in cell and tissue behaviour. Finally, considering recent advances from the developmental biomechanics field showing that mechanical inputs work as cues that promote morphogenesis, we invite to revisit the concept of morphogen.

摘要

生物系统(如细胞、组织和生物体)获得形状的过程被称为形态发生,它是包括胚胎发育、伤口愈合甚至癌症在内的众多生物学背景的核心。形态发生既依赖于系统的自组织特性,也依赖于环境输入(生化和生物物理)。形态发生的经典观点是基于对外源性生化分子(如形态发生素)的研究。然而,最近的研究表明,机械环境也被细胞用来在组织内进行通讯,这表明这种机械串扰对于协调形态发生转变和自组织至关重要。在本文中,我们将讨论组织相互作用如何驱动稳健的形态发生,从经典的生化观点开始,最终讨论组织的生物物理特性如何与其周围环境相互反馈以允许形态发生。我们还评论了计算机模型如何帮助整合和预测细胞和组织行为的变化。最后,考虑到来自发育生物力学领域的最新进展表明机械输入作为促进形态发生的线索,我们邀请重新审视形态发生素的概念。

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