Cell maturation: Hallmarks, triggers, and manipulation.

Cell maturation: Hallmarks, triggers, and manipulation.
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细胞成熟:标志,触发器和操纵。

DOI:
10.1016/j.cell.2021.12.012
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发表时间:
2022-01-20
期刊:
影响因子:
64.5
通讯作者:
Melton DA
Melton DA
中科院分区:
生物学1区
文献类型:
--
作者:
Alvarez-Dominguez JR;Melton DA

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细胞如何变得特化或“成熟”,对细胞和发育生物学很重要。虽然成熟通常被认为是一个终端的命运,它可能是更有帮助的考虑成熟不是一个开关,而是一个动态的连续适应表型状态设置的遗传和环境规划。成熟的标志包括赋予适应行为的解剖学(形式,基因电路,互连性)和生理学(功能,节奏,增殖)的变化。我们讨论了如何利用它们的化学(营养物质,氧气,生长因子)和物理(机械,空间,电)触发器在体外和体内,以及如何成熟的策略可以支持疾病研究和再生医学。Alvarez-Dominguez和Melton提出了一个理解细胞“成熟”的框架,该框架结合了现代对可塑性的看法。使用这个框架,他们描述了已知的化学和物理成熟调节剂,并总结了在实验模型和再生医学中调节成熟的方法和进展
How cells become specialized, or “mature”, is important for cell and developmental biology. While maturity is usually deemed a terminal fate, it may be more helpful to consider maturation not as a switch, but a dynamic continuum of adaptive phenotypic states set by genetic and environment programming. The hallmarks of maturity comprise changes in anatomy (form, gene circuitry, interconnectivity) and physiology (function, rhythms, proliferation) that confer adaptive behavior. We discuss efforts to harness their chemical (nutrients, oxygen, growth factors) and physical (mechanical, spatial, electrical) triggers in vitro and in vivo, and how maturation strategies may support disease research and regenerative medicine. Alvarez-Dominguez and Melton propose a framework for understanding cellular “maturity” that incorporates modern views on plasticity. Using this framework, they describe the known chemical and physical regulators of maturity and summarize approaches and progress in regulating maturity in experimental models and regenerative medicine
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