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Review
. 2024 Oct;40(1):75-96.
doi: 10.1146/annurev-cellbio-120123-105748. Epub 2024 Sep 21.

Exploring Mechanical Forces Shaping Self-Organization and Morphogenesis During Early Embryo Development

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Free article
Review

Exploring Mechanical Forces Shaping Self-Organization and Morphogenesis During Early Embryo Development

Hong Huang et al. Annu Rev Cell Dev Biol. 2024 Oct.
Free article

Abstract

Embryonic development is a dynamic process orchestrated by a delicate interplay of biochemical and biophysical factors. While the role of genetics and biochemistry in embryogenesis has been extensively studied, recent research has highlighted the significance of mechanical regulation in shaping and guiding this intricate process. Here, we provide an overview of the current understanding of the mechanical regulation of embryo development. We explore how mechanical forces generated by cells and tissues play a crucial role in driving the development of different stages. We examine key morphogenetic processes such as compaction, blastocyst formation, implantation, and egg cylinder formation, and discuss the mechanical mechanisms and cues involved. By synthesizing the current body of literature, we highlight the emerging concepts and open questions in the field of mechanical regulation. We aim to provide an overview of the field, inspiring future investigations and fostering a deeper understanding of the mechanical aspects of embryo development.

Keywords: cytoskeleton; embryo development; mechanical force; mechanobiology; mechanotransduction.

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