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首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >An in vitro tool to assess cytochrome p450 drug biotransformation-dependent cytotoxicity in engineered hepg2 cells generated by using adenoviral vectors
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An in vitro tool to assess cytochrome p450 drug biotransformation-dependent cytotoxicity in engineered hepg2 cells generated by using adenoviral vectors

机译:评估腺病毒载体产生的工程化hepg2细胞中细胞色素p450药物生物转化依赖性细胞毒性的体外工具

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摘要

Many adverse drug reactions leading to hepatotoxicity are caused by the cytochrome P450-dependent activation of non-toxic drugs or chemicals into reactive metabolites. To this end, adenoviruses were used as a tool to efficiently deliver specific CYP genes into cultured cells (i.e., human hepatoma cell line HepG2). Recombinant-defective adenoviral vectors encoding for genes CYP3A4 (Adv-CYP3A4), CYP2E1 (Adv-CYP2E1), CYP2A6 (Adv-CYP2A6) and CYP1A2 (Adv-CYP1A2) were used to confer specific CYP drug metabolic capabilities to HepG2 cells. Upgraded cells transiently expressed single specific cytochrome P450 enzymatic activities in terms of the number of the infecting virus particles used in their transduction. HepG2 cells transduced with adenoviruses and wild HepG2 cells cultured in 96 well-plates were incubated in the presence of model compounds, some of which can be metabolized to reactive metabolites. After compound exposure, cell viability was assessed by the commonly used MTT assay. The results confirm that the cell-based assay is a valuable tool in toxicology assessments and high-throughput screenings to detect cytotoxicity mediated by cytochrome P450 biotransformation in preclinical drug development. The assay also has a potential applicability in other industrial sectors such as the chemical industry.
机译:许多导致肝毒性的药物不良反应是由细胞色素P450依赖性的无毒药物或化学物质活化成反应性代谢产物引起的。为此,腺病毒被用作将特定的CYP基因有效地递送到培养细胞(即人肝癌细胞系HepG2)中的工具。使用编码基因CYP3A4(Adv-CYP3A4),CYP2E1(Adv-CYP2E1),CYP2A6(Adv-CYP2A6)和CYP1A2(Adv-CYP1A2)的重组缺陷型腺病毒载体赋予HepG2细胞特定的CYP药物代谢能力。就转导中使用的感染病毒颗粒的数量而言,升级细胞瞬时表达了单个特定的细胞色素P450酶活性。将腺病毒转导的HepG2细胞和在96孔板中培养的野生HepG2细胞在存在模型化合物的情况下进行温育,其中一些模型化合物可以代谢为反应性代谢产物。暴露于化合物后,通过常用的MTT分析评估细胞活力。结果证实,基于细胞的测定是毒理学评估和高通量筛选中的重要工具,可用于检测临床前药物开发中由细胞色素P450生物转化介导的细胞毒性。该测定法在其他工业领域,例如化学工业中也具有潜在的适用性。

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