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用于延长肝细胞培养的约束性球体。

Constrained spheroids for prolonged hepatocyte culture.

机构信息

Institute of Biotechnology and Nanotechnology, A*STAR, The Nanos, #04-01, 31 Biopolis Way, Singapore 138669, Singapore; NUS Graduate School for Integrative Sciences and Engineering, Centre for Life Sciences (CeLS), #05-01, 28 Medical Drive, Singapore 117456, Singapore; Department of Physiology, Yong Loo Lin School of Medicine, MD9-03-03, 2 Medical Drive, Singapore 117597, Singapore.

Institute of Biotechnology and Nanotechnology, A*STAR, The Nanos, #04-01, 31 Biopolis Way, Singapore 138669, Singapore; Department of Physiology, Yong Loo Lin School of Medicine, MD9-03-03, 2 Medical Drive, Singapore 117597, Singapore; Singapore-MIT Alliance for Research and Technology, 1 CREATE Way, #10-01 CREATE Tower, Singapore 138602, Singapore.

出版信息

Biomaterials. 2016 Feb;80:106-120. doi: 10.1016/j.biomaterials.2015.11.036. Epub 2015 Dec 3.

Abstract

Liver-specific functions in primary hepatocytes can be maintained over extended duration in vitro using spheroid culture. However, the undesired loss of cells over time is still a major unaddressed problem, which consequently generates large variations in downstream assays such as drug screening. In static culture, the turbulence generated by medium change can cause spheroids to detach from the culture substrate. Under perfusion, the momentum generated by Stokes force similarly results in spheroid detachment. To overcome this problem, we developed a Constrained Spheroids (CS) culture system that immobilizes spheroids between a glass coverslip and an ultra-thin porous Parylene C membrane, both surface-modified with poly(ethylene glycol) and galactose ligands for optimum spheroid formation and maintenance. In this configuration, cell loss was minimized even when perfusion was introduced. When compared to the standard collagen sandwich model, hepatocytes cultured as CS under perfusion exhibited significantly enhanced hepatocyte functions such as urea secretion, and CYP1A1 and CYP3A2 metabolic activity. We propose the use of the CS culture as an improved culture platform to current hepatocyte spheroid-based culture systems.

摘要

在体外使用球体培养的方法可以使原代肝细胞的肝脏特异性功能在较长时间内得以维持。然而,细胞随时间的不可避免的损失仍然是一个未解决的主要问题,这会导致下游检测,如药物筛选,产生很大的变化。在静态培养中,培养基变化产生的湍流会导致球体从培养基质上脱落。在灌注条件下,斯托克斯力产生的动量同样会导致球体脱落。为了克服这个问题,我们开发了Constrained Spheroids (CS) 培养系统,它将球体固定在玻璃盖玻片和超薄多孔聚对二甲苯 C 膜之间,这两种材料都经过表面修饰,带有聚乙二醇和半乳糖配体,以实现最佳的球体形成和维持。在这种配置下,即使引入了灌注,细胞损失也最小化。与标准胶原夹层模型相比,在灌注条件下作为 CS 培养的肝细胞表现出显著增强的肝细胞功能,如尿素分泌以及 CYP1A1 和 CYP3A2 代谢活性。我们建议使用 CS 培养作为一种改进的培养平台,取代当前基于肝细胞球体的培养系统。

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