Herrera-Delgado Edgar, Maître Jean-Léon
Institut Curie, PSL Research University, CNRS UMR3215, INSERM U934, Paris, France.
Institut Curie, PSL Research University, CNRS UMR3215, INSERM U934, Paris, France.
Cells Dev. 2021 Dec;168:203752. doi: 10.1016/j.cdev.2021.203752. Epub 2021 Oct 8.
The blastocyst has long been a hallmark system of study in developmental biology due to its importance in mammalian development and clinical relevance for assisted reproductive technologies. In recent years, the blastocyst is emerging as a system of study for mathematical modelling. In this review, we compile, to our knowledge, all models describing preimplantation development. Coupled with experiments, these models have provided insight regarding the morphogenesis and cell-fate specification throughout preimplantation development. In the case of cell-fate specification, theoretical models have provided mechanisms explaining how proportion of cell types are established and maintained when confronted to perturbations. For cell-shape based models, they have described quantitatively how mechanical forces sculpt the blastocyst and even predicted how morphogenesis could be manipulated. As theoretical biology develops, we believe the next critical stage in modelling involves an integration of cell fate and mechanics to provide integrative models of development at distinct spatiotemporal scales. We discuss how, building on a balanced base of mechanical and chemical models, the preimplantation embryo will play a key role in integrating these two faces of the same coin.
由于囊胚在哺乳动物发育中的重要性以及与辅助生殖技术的临床相关性,长期以来它一直是发育生物学研究的标志性系统。近年来,囊胚正逐渐成为数学建模的一个研究系统。在这篇综述中,据我们所知,我们汇总了所有描述着床前发育的模型。与实验相结合,这些模型为着床前发育过程中的形态发生和细胞命运特化提供了见解。在细胞命运特化方面,理论模型提供了解释在面对干扰时细胞类型比例如何建立和维持的机制。对于基于细胞形状的模型,它们定量描述了机械力如何塑造囊胚,甚至预测了形态发生如何被操控。随着理论生物学的发展,我们认为建模的下一个关键阶段涉及细胞命运与力学的整合,以提供不同时空尺度下发育的综合模型。我们讨论了如何在机械模型和化学模型的平衡基础上,着床前胚胎将在整合同一枚硬币的这两个方面发挥关键作用。