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使用微流控芯片以确定性方式建立基于单细胞的共培养体系。

Establishing Single-Cell Based Co-Cultures in a Deterministic Manner with a Microfluidic Chip.

作者信息

He Cheng-Kun, Chen Ya-Wen, Wang Ssu-Han, Hsu Chia-Hsien

机构信息

Institute of Biomedical Engineering and Nanomedicine, National Health Research Institutes; Ph.D. Program in Tissue Engineering and Regenerative Medicine, National Chung Hsing University.

National Institute of Cancer Research, National Health Research Institutes.

出版信息

J Vis Exp. 2019 Sep 27(151). doi: 10.3791/60202.

Abstract

Cell co-culture assays have been widely used for studying cell-cell interactions between different cell types to better understand the biology of diseases including cancer. However, it is challenging to clarify the complex mechanism of intercellular interactions in highly heterogeneous cell populations using conventional co-culture systems because the heterogeneity of the cell subpopulation is obscured by the average values; the conventional co-culture systems can only be used to describe the population signal, but are incapable of tracking individual cells behavior. Furthermore, conventional single-cell experimental methods have low efficiency in cell manipulation because of the Poisson distribution. Microfabricated devices are an emerging technology for single-cell studies because they can accurately manipulate single cells at high-throughput and can reduce sample and reagent consumption. Here, we describe the concept and application of a microfluidic chip for multiple single-cell co-cultures. The chip can efficiently capture multiple types of single cells in a culture chamber (~46%) and has a sufficient culture space useful to study the cells' behavior (e.g., migration, proliferation, etc.) under cell-cell interaction at the single-cell level. Lymphatic endothelial cells and oral squamous cell carcinoma were used to perform a single-cell co-culture experiment on the microfluidic platform for live multiple single-cell interaction studies.

摘要

细胞共培养分析已被广泛用于研究不同细胞类型之间的细胞间相互作用,以更好地理解包括癌症在内的疾病生物学。然而,使用传统共培养系统来阐明高度异质性细胞群体中细胞间相互作用的复杂机制具有挑战性,因为细胞亚群的异质性被平均值掩盖了;传统共培养系统只能用于描述群体信号,而无法追踪单个细胞的行为。此外,由于泊松分布,传统的单细胞实验方法在细胞操作方面效率较低。微制造设备是用于单细胞研究的新兴技术,因为它们可以在高通量下精确操纵单个细胞,并可以减少样品和试剂消耗。在这里,我们描述了一种用于多种单细胞共培养的微流控芯片的概念和应用。该芯片可以在培养室中高效捕获多种类型的单个细胞(约46%),并且具有足够的培养空间,有助于在单细胞水平上研究细胞间相互作用下细胞的行为(如迁移、增殖等)。使用淋巴管内皮细胞和口腔鳞状细胞癌在微流控平台上进行单细胞共培养实验,以进行实时多种单细胞相互作用研究。

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