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Gastruloids: Pluripotent stem cell models of mammalian gastrulation and embryo engineering.

Authors :
Arias, Alfonso Martinez
Marikawa, Yusuke
Moris, Naomi
Source :
Developmental Biology. Aug2022, Vol. 488, p35-46. 12p.
Publication Year :
2022

Abstract

Gastrulation is a fundamental and critical process of animal development whereby the mass of cells that results from the proliferation of the zygote transforms itself into a recognizable outline of an organism. The last few years have seen the emergence of a number of experimental models of early mammalian embryogenesis based on Embryonic Stem (ES) cells. One of this is the Gastruloid model. Gastruloids are aggregates of defined numbers of ES cells that, under defined culture conditions, undergo controlled proliferation, symmetry breaking, and the specification of all three germ layers characteristic of vertebrate embryos, and their derivatives. However, they lack brain structures and, surprisingly, reveal a disconnect between cell type specific gene expression and tissue morphogenesis, for example during somitogenesis. Gastruloids have been derived from mouse and human ES cells and several variations of the original model have emerged that reveal a hereto unknown modularity of mammalian embryos. We discuss the organization and development of gastruloids in the context of the embryonic stages that they represent, pointing out similarities and differences between the two. We also point out their potential as a reproducible, scalable and searchable experimental system and highlight some questions posed by the current menagerie of gastruloids. [Display omitted] • Gastrulation is a fundamental process of animal development that leads to the outline of an organism. • Gastruloids are a models of early mammalian embryogenesis based on Embryonic Stem (ES) cells. • Gastruloids derived from mouse and human reveal a hereto unknown modularity of mammalian embryos. • Gastruloids have a potential to be used as a model for development and disease. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00121606
Volume :
488
Database :
Academic Search Index
Journal :
Developmental Biology
Publication Type :
Academic Journal
Accession number :
157455566
Full Text :
https://doi.org/10.1016/j.ydbio.2022.05.002