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Microwell-Mediated Cell Spheroid Formation and Its Applications

机译:微孔介导的细胞球体形成及其应用

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There is a continuing attempt to study cell to cell interactions to control the growth, function, and differentiation of cells. One approach that can be utilized to assess representative cell to cell interactions is by using three-dimensional cell spheroids, also referred to as cell aggregates, generated by adhering cells to each other through cell-adhesion molecules such as cadherin. Compared with conventional two-dimensional cell monolayer, cell spheroid offers more realistic platform to predict cell behavior in high-throughput manner. To recapitulate the cell spheroid formation in vitro, microwell-mediated culture system has become a robust and efficient tool for providing uniform-sized spheroids. In this review, we first iterate the recent developments and innovations in microwell-mediated cell culture platform, focusing on formation and function of cell spheroids using various cells such as embryonic stem cells, postnatal stem cells, and somatic cells. Furthermore, the recent advancements in applications of cell spheroids generated from microwell-mediated culture system is covered in this article. The discussion on the integrative biology regarding cell to cell interaction and other biological events in cell spheroid is another focal point of this review.
机译:持续尝试研究细胞以控制细胞的生长,功能和分化。一种可用于评估代表性细胞到细胞相互作用的一种方法是通过使用三维细胞球体,也称为细胞聚集体,通过粘附的细胞粘附分子彼此粘附到彼此中产生。与传统的二维细胞单层相比,细胞球体提供更现实的平台,以预测高吞吐量的细胞行为。为了在体外重新承载细胞球体形成,微孔介导的培养系统已成为提供均匀尺寸的球状体的稳健和有效的工具。在这篇综述中,我们首先延长了微孔介导的细胞培养平台的最近的发展和创新,专注于使用各种细胞如胚胎干细胞,产后干细胞和体细胞的细胞球体的形成和功能。此外,本文介绍了微孔介导的培养系统产生的细胞球体应用的最新进步。关于细胞对细胞相互作用的综合生物学和细胞球体的其他生物事件的讨论是审查的另一个焦点。

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