Polarization of organoids by bioengineered symmetry breaking

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WEB OF SCIENCE

2
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SCOPUS

3

초록

Symmetry breaking leading to axis formation and spatial patterning is crucial for achieving more accurate recapitulation of human development in organoids. While these processes can occur spontaneously by self-organizing capabilities of pluripotent stem cells, they can often result in variation in structure and composition of cell types within organoids. To address this limitation, bioengineering techniques that utilize geometric, topological and stiffness factors are increasingly employed to enhance control and consistency. Here, we review how spontaneous manners and engineering tools such as micropattern, microfluidics, biomaterials, etc. can facilitate the process of symmetry breaking leading to germ layer patterning and the formation of anteroposterior and dorsoventral axes in blastoids, gastruloids, neuruloids and neural organoids. Furthermore, brain assembloids, which are composed of multiple brain regions through fusion processes are discussed. The overview of organoid polarization in terms of patterning tools can offer valuable insights for enhancing the physiological relevance of organoid system. © 2024 The Authors

키워드

Bioengineering; Neural organoid; Pluripotent stem cell; Polarization; Symmetry breaking; HUMAN BRAIN-DEVELOPMENT; EMBRYONIC STEM-CELLS; SIGNALING CENTERS; MODEL; GASTRULOIDS; POLARITY; DIFFERENTIATION; GENERATION
제목
Polarization of organoids by bioengineered symmetry breaking
저자
Ryu, Jae Ryun; Ko, Kahee; Sun, Woong
DOI
10.1016/j.ibneur.2024.05.002
발행일
2024-12
유형
Article
저널명
Ibro Neuroscience Reports
권
17
페이지
22 ~ 31