Real-time measurement of cholesterol secreted by human hepatocytes using a novel microfluidic assay.

S. Karnik, Chaeeun Lee, A. Cancino, A. Bhushan
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Abstract

The use of microfluidics has become widespread in recent years because of the use of lesser resources such as small size, low volume of reagents, and physiological representation of mammalian cells. One of the advantages of microfluidic-based cell culture is the ability to perfuse culture media which tends to improve cellular health and function. Although measurement of cellular function conventionally is carried out using well-plates and plate readers, these approaches are insufficient to carry out in-line analysis of perfused cell cultures because of mismatch between volumes and sensitivity. We report the development of a novel microfluidic device and assay that is carried out under perfusion, in-line to measure the cholesterol secreted from a human hepatocyte tissue-chip. The heart of the assay is the unique implementation of enzymatic chemistry that is carried out on a polystyrene bead. Using this approach, we successfully measured cholesterol secreted by the perfused human hepatocytes.
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实时测量人肝细胞分泌的胆固醇使用一种新的微流体试验。
近年来,由于使用较少的资源,如小尺寸、低体积的试剂和哺乳动物细胞的生理表征,微流体的使用已经变得广泛。基于微流体的细胞培养的优点之一是能够灌注培养基,这倾向于改善细胞的健康和功能。虽然细胞功能的测量通常是使用孔板和板阅读器进行的,但由于体积和灵敏度之间的不匹配,这些方法不足以进行灌注细胞培养物的在线分析。我们报告了一种新型微流体装置和实验的发展,该装置和实验在灌注下进行,在线测量从人肝细胞组织芯片分泌的胆固醇。该分析的核心是在聚苯乙烯珠上进行的独特的酶化学实施。利用这种方法,我们成功地测量了灌注的人肝细胞分泌的胆固醇。
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