Stem Cells & Reprogramming Laboratory, Department of Biology, Faculty of Science, Toho University, Funabashi, Japan.
Reagents Business, KAC Co., Amagasaki, Japan.
Pharmacol Res Perspect. 2020 Oct;8(5):e00652. doi: 10.1002/prp2.652.
Cytochrome P450 enzymes (CYP) function in drug metabolism in the liver. To evaluate numerous drug candidates, a high-content screening (HCS) system with hepatocyte-like cells (HLCs) that can replace adult human hepatocytes is required. Human hepatocellular carcinoma HepaRG is the only cell line capable of providing HLCs with high CYP3A4 expression comparable to that in adult hepatocytes after cell differentiation. The aim of this study was to design an ideal multiwell culture system for HLCs using transgenic HepaRG cells expressing the EGFP coding an enhanced green fluorescent protein under CYP3A4 transcriptional regulation. HLCs were matured on five different types of 96-well black plates. Culturing HLCs on glass-bottom Optical CVG plates significantly promoted cell maturation and increased metabolic activity by twofold under two-dimensional (2D) culture conditions, and these features were enhanced by 2% collagen coating. Three plates for three-dimensional (3D) cell cultures with a gas-exchangeable fabric or dimethylpolysiloxane membrane bottom formed multiple round colonies, whereas they were ineffective for CYP3A4 expression. Under optimized conditions presented here, HLCs lost responsiveness to nuclear receptor-mediated transcriptional induction of CYP3A4, suggesting that CYP3A4 transcription has already been fully upregulated. Therefore, HepaRG-derived HLCs will provide an alternative to human hepatocytes with high levels of CYP3A4 enzyme activity even under 2D culture conditions. This will improve a variety of drug screening methods.
细胞色素 P450 酶(CYP)在肝脏中的药物代谢中发挥作用。为了评估众多的药物候选物,需要一种具有肝细胞样细胞(HLC)的高通量筛选(HCS)系统,该系统可以替代成人肝细胞。人肝癌 HepaRG 是唯一能够在细胞分化后提供具有与成人肝细胞相当的高 CYP3A4 表达的 HLC 的细胞系。本研究旨在设计一种理想的多孔培养系统,用于使用表达 CYP3A4 转录调节下的 EGFP 编码增强型绿色荧光蛋白的转基因 HepaRG 细胞培养 HLC。将 HLC 在五种不同类型的 96 孔黑色平板上进行成熟培养。在二维(2D)培养条件下,在玻璃底光学 CVG 平板上培养 HLC 可显著促进细胞成熟并将代谢活性提高两倍,而 2%胶原蛋白涂层可增强这些特征。具有可交换气体的织物或二甲基聚硅氧烷膜底部的三个用于 3D 细胞培养的平板可形成多个圆形菌落,但对 CYP3A4 表达无效。在本文提出的优化条件下,HLC 失去了对核受体介导的 CYP3A4 转录诱导的反应性,表明 CYP3A4 转录已经被充分上调。因此,HepaRG 衍生的 HLC 即使在 2D 培养条件下也能提供高 CYP3A4 酶活性的人肝细胞替代物。这将改善各种药物筛选方法。