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Concise Review: Stem Cell Microenvironment on a Chip: Current Technologies for Tissue Engineering and Stem Cell Biology

机译:简明综述:芯片上的干细胞微环境:组织工程和干细胞生物学的当前技术

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Stem cells have huge potential in many therapeutic areas. With conventional cell culture methods, however, it is difficult to achieve in vivo-like microenvironments in which a number of well-controlled stimuli are provided for growing highly sensitive stem cells. In contrast, microtechnology-based platforms offer advantages of high precision, controllability, scalability, and reproducibility, enabling imitation of the complex physiological context of in vivo. This capability may fill the gap between the present knowledge about stem cells and that required for clinical stem cell-based therapies. We reviewed the various types of microplatforms on which stem cell microenvironments are mimicked. We have assigned the various microplatforms to four categories based on their practical uses to assist stem cell biologists in using them for research. In particular, many examples are given of microplatforms used for the production of embryoid bodies and aggregates of stem cells in vitro. We also categorized microplatforms based on the types of factors controlling the behaviors of stem cells. Finally, we outline possible future directions for microplatform-based stem cell research, such as research leading to the production of well-defined environments for stem cells to be used in scaled-up systems or organs-on-a-chip, the regulation of induced pluripotent stem cells, and the study of the genetic states of stem cells on microplatforms. SignificanceStem cells are highly sensitive to a variety of physicochemical cues, and their fate can be easily altered by a slight change of environment; therefore, systematic analysis and discrimination of the extracellular signals and intracellular pathways controlling the fate of cells and experimental realization of sensitive and controllable niche environments are critical. This review introduces diverse microplatforms to provide in vitro stem cell niches. Microplatforms could control microenvironments around cells and have recently attracted much attention in biology including stem cell research. These microplatforms and the future directions of stem cell microenvironment are described.
机译:干细胞在许多治疗区域具有巨大潜力。然而,通过常规细胞培养方法,难以实现体内的微环境,其中提供了许多良好控制的刺激以产生高敏感的干细胞。相比之下,基于微技术的平台提供了高精度,可控性,可扩展性和再现性的优点,使仿死体内的复杂生理背景。这种能力可能填充目前关于干细胞的知识与临床干细胞疗法所需的差距。我们审查了各种类型的微量环状,在其上模仿干细胞微环境。我们根据其实际用途为四类分配了各种微量格式,以帮助干细胞生物学家使用它们进行研究。特别地,许多实例给出了用于在体外产生胚胎体和干细胞聚集体的微量晶片。我们还基于控制干细胞行为的因素类型分类微塑料。最后,我们概述了基于微代表性的干细胞研究的未来方向,例如导致用于生产明确的干细胞环境的研究,以便在缩放系统或芯片上使用芯片的调节。诱导多能干细胞,以及对微量塑造的干细胞遗传状态的研究。意义的细胞对各种物理化学提示非常敏感,并且它们的命运可以通过细微的环境变化容易地改变;因此,控制细胞的细胞外信号和细胞内途径的系统分析和辨别,以及敏感和可控利基环境的实验性实现是至关重要的。本综述介绍了多种微量晶片,以提供体外干细胞的核桃。 Microplatforms可以控制细胞周围的微环境,最近引起了在包括干细胞研究的生物学中的许多关注。描述了这些微量晶片和干细胞微环境的未来方向。

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