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用于细胞培养的连续灌注微孔板。

A continuous perfusion microplate for cell culture.

机构信息

Science & Technology, Corning Incorporated, Corning, New York 14831-0001, USA.

出版信息

Lab Chip. 2013 Mar 21;13(6):1039-43. doi: 10.1039/c2lc41102d.

Abstract

We describe a 96-well microplate with fluidically connected wells that enables the continuous fluid perfusion between wells without the need for external pumping. A single unit in such a perfusion microplate consists of three wells: a source well, a sample (cell culture) well in the middle and a waste well. Fluid perfusion is achieved using a combination of the hydrostatic pressure generated by different liquid levels in the wells and the fluid wicking through narrow strips of a cellulose membrane connecting the wells. There is an excellent correspondence between the observed perfusion flow dynamics and the flow simulations based on Darcy's Law. Hepatocytes (C3A cells) cultured for 4 days in the perfusion microplate with no media exchange in the cell culture well had the same viability as hepatocytes exposed to a daily exchange of media. EOC 20 cells that require media conditioned by LADMAC cells were shown to be equally viable in the adjacent cell culture well of the perfusion microplate with LADMAC cells cultured in the source well. Tegafur, a prodrug, when added to primary human hepatocytes in the source well, was metabolized into a cytotoxic metabolite that kills colon cancer cells (HCT 116) cultured in the adjacent cell culture well; no toxicity was observed when only medium was in the source well. These results suggest that the perfusion microplate is a useful tool for a variety of cell culture applications with benefits ranging from labor savings to enabling in vivo-like toxicity studies.

摘要

我们描述了一种具有流体连通孔的 96 孔微孔板,可在无需外部泵送的情况下实现孔与孔之间的连续流体灌注。在这种灌注微孔板中,单个单元由三个孔组成:一个源孔、中间的一个样品(细胞培养)孔和一个废物孔。通过利用不同孔中液位产生的静水压力以及通过连接孔的纤维素膜的窄条进行的流体虹吸作用来实现流体灌注。观察到的灌注流动动力学与基于达西定律的流动模拟之间存在极好的对应关系。在没有在细胞培养孔中交换培养基的情况下,在灌注微孔板中培养 4 天的肝细胞(C3A 细胞)与暴露于每日培养基交换的肝细胞具有相同的活力。需要由 LADMAC 细胞条件化的培养基的 EOC 20 细胞在源孔中培养的 LADMAC 细胞的相邻细胞培养孔中同样具有活力。当将前体药物替加氟添加到源孔中的原代人肝细胞中时,它会代谢成一种细胞毒性代谢物,杀死相邻细胞培养孔中培养的结肠癌细胞(HCT 116);当源孔中只有培养基时,没有观察到毒性。这些结果表明,灌注微孔板是一种用于各种细胞培养应用的有用工具,其益处从节省劳动力到能够进行类似于体内的毒性研究不等。

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