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High Content Imaging and Analysis Enable Quantitative In Situ Assessment of CYP3A4 Using Cryopreserved Differentiated HepaRG Cells

机译:高含量的成像和分析能够使用冷冻保存的分化的HepaRG细胞进行CYP3A4的定量原位评估

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摘要

High-throughput imaging-based hepatotoxicity studies capable of analyzing individual cells in situ hold enormous promise for drug safety testing but are frequently limited by a lack of sufficient metabolically competent human cells. This study examined cryopreserved HepaRG cells, a human liver cell line which differentiates into both hepatocytes and biliary epithelial cells, to determine if these cells may represent a suitable metabolically competent cellular model for novel High Content Analysis (HCA) applications. Characterization studies showed that these cells retain many features characteristic of primary human hepatocytes and display significant CYP3A4 and CYP1A2 induction, unlike the HepG2 cell line commonly utilized for HCA studies. Furthermore, this study demonstrates that CYP3A4 induction can be quantified via a simple image analysis-based method, using HepaRG cells as a model system. Additionally, data demonstrate that the hepatocyte and biliary epithelial subpopulations characteristic of HepaRG cultures can be separated during analysis simply on the basis of nuclear size measurements. Proof of concept studies with fluorescent cell function reagents indicated that further multiparametric image-based assessment is achievable with HepaRG. In summary, image-based screening of metabolically competent human hepatocyte models cells such as HepaRG offers novel approaches for hepatotoxicity assessment and improved drug screening tools.
机译:能够原位分析单个细胞的基于高通量成像的肝毒性研究对药物安全性测试具有广阔的前景,但常常由于缺乏足够的代谢能力人类细胞而受到限制。这项研究检查了冷冻保存的HepaRG细胞(一种可分化为肝细胞和胆管上皮细胞的人类肝脏细胞系),以确定这些细胞是否可以代表适合用于新的高含量分析(HCA)应用的具有代谢能力的细胞模型。表征研究表明,这些细胞保留了原代人肝细胞的许多特征,并显示出显着的CYP3A4和CYP1A2诱导作用,这与通常用于HCA研究的HepG2细胞系不同。此外,这项研究表明CYP3A4诱导可以通过简单的基于图像分析的方法,使用HepaRG细胞作为模型系统进行定量。此外,数据表明,在分析过程中,仅基于核大小的测量即可分离出HepaRG培养物的特征性肝细胞和胆道上皮亚群。用荧光细胞功能试剂进行的概念验证研究表明,使用HepaRG可以实现基于多参数图像的进一步评估。总之,基于图像的代谢能力强的人类肝细胞模型细胞(例如HepaRG)的筛选为肝毒性评估和改进的药物筛选工具提供了新颖的方法。

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