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在灌注多孔装置中培养的冷冻保存的人原代肝细胞的形态学行为和代谢能力。

Morphological behaviour and metabolic capacity of cryopreserved human primary hepatocytes cultivated in a perfused multiwell device.

作者信息

Vivares Aurelie, Salle-Lefort Sandrine, Arabeyre-Fabre Catherine, Ngo Robert, Penarier Geraldine, Bremond Michele, Moliner Patricia, Gallas Jean-François, Fabre Gerard, Klieber Sylvie

机构信息

Drug Disposition Domain, Disposition, Safety and Animal Research Scientific Core Plateform, SANOFI R&D , Montpellier , France .

出版信息

Xenobiotica. 2015 Jan;45(1):29-44. doi: 10.3109/00498254.2014.944612. Epub 2014 Jul 28.

Abstract
  1. The quantitative prediction of the pharmacokinetic parameters of a drug from data obtained using human in vitro systems remains a significant challenge i.e. prediction of metabolic clearance in humans and estimation of the relative contribution of enzymes involved in the clearance. This has become particularly problematic for low turnover compounds. 2. Having human hepatocytes with stable cellular function over several days that adequately mimic the complexity of the physiological environment would be a major advance. Thus, we evaluated human hepatocytes, maintained in culture during 7 days in the microfluidic LiverChip™ system, in terms of morphological appearance, relative mRNA expression of phase I and II enzymes and transporters as a function of time, and metabolic capacity using probe substrates. 3. The results showed that mRNA levels of the major genes for enzymes involved in drug metabolism were well-maintained over a 7-day period of culture. Furthermore, after 4 days of culture, in the Liverchip™ device, human hepatocytes exhibited higher or similar CYPs activities compared to 1 day of culture in 2D-static conditions. 4. The functional data were supported by light/electron microscopies and immunohistochemistry showing viable tissue structure and well-differentiated human hepatocytes: presence of cell junctions, glycogen storage, and bile canaliculi.
摘要
  1. 从使用人体体外系统获得的数据对药物的药代动力学参数进行定量预测仍然是一项重大挑战,即预测人体中的代谢清除率以及估计参与清除过程的酶的相对贡献。对于低周转率化合物而言,这一问题尤为突出。2. 拥有在数天内具有稳定细胞功能且能充分模拟生理环境复杂性的人肝细胞将是一项重大进展。因此,我们评估了在微流控肝芯片(LiverChip™)系统中培养7天的人肝细胞,包括其形态外观、作为时间函数的I相和II相酶及转运蛋白的相对mRNA表达,以及使用探针底物的代谢能力。3. 结果表明,参与药物代谢的酶的主要基因的mRNA水平在7天的培养期内保持良好。此外,在肝芯片(Liverchip™)装置中培养4天后,与在二维静态条件下培养1天相比,人肝细胞表现出更高或相似的细胞色素P450(CYPs)活性。4. 功能数据得到光镜/电镜检查和免疫组织化学的支持,显示出有活力的组织结构和分化良好的人肝细胞:存在细胞连接、糖原储存和胆小管。

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