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用于遗传毒性测试的表达人细胞色素 P450 的 TK6 衍生细胞的开发和应用。

Development and Application of TK6-derived Cells Expressing Human Cytochrome P450s for Genotoxicity Testing.

机构信息

Division of Genetic and Molecular Toxicology.

Division of Biochemical Toxicology, National Center for Toxicological Research, U.S. Food and Drug Administration, Jefferson, Arkansas 72079.

出版信息

Toxicol Sci. 2020 Jun 1;175(2):251-265. doi: 10.1093/toxsci/kfaa035.

Abstract

Metabolism plays a key role in chemical genotoxicity; however, most mammalian cells used for in vitro genotoxicity testing lack effective metabolizing enzymes. We recently developed a battery of TK6-derived cell lines that individually overexpress 1 of 8 cytochrome P450s (CYP1A1, 1A2, 1B1, 2A6, 2B6, 2C9, 2C19, and 3A4) using a lentiviral expression system. The increased expression and metabolic function of each individual CYP in each established cell line were confirmed using real-time PCR, Western blotting, and mass spectrometry analysis; the parental TK6 cells and empty vector (EV) transduced cells had negligible CYP levels. Subsequently, we evaluated these cell lines using 2 prototypical polyaromatic hydrocarbon mutagens, 7,12-dimethylbenz[a]anthracene (DMBA) and benzo[a]pyrene (B[a]P), that require metabolic activation to exert their genotoxicity. DMBA-induced cytotoxicity, phosphorylation of histone H2A.X, and micronucleus formation were significantly increased in TK6 cells with CYP1A1, 1B1, 2B6, and 2C19 expression as compared with EV controls. B[a]P significantly increased cytotoxicity, DNA damage, and chromosomal damage in TK6 cells overexpressing CYP1A1 and 1B1 when compared with EV controls. B[a]P also induced micronucleus formation in TK6 cells expressing CYP1A2. These results suggest that our CYP-expressing TK6 cell system can be used to detect the genotoxicity of compounds requiring metabolic transformation.

摘要

代谢在化学遗传毒性中起着关键作用;然而,大多数用于体外遗传毒性测试的哺乳动物细胞缺乏有效的代谢酶。我们最近开发了一系列由 TK6 衍生的细胞系,这些细胞系通过慢病毒表达系统分别过表达 8 种细胞色素 P450 中的 1 种(CYP1A1、1A2、1B1、2A6、2B6、2C9、2C19 和 3A4)。使用实时 PCR、Western blot 和质谱分析确认了每个建立的细胞系中每个 CYP 的增加表达和代谢功能;亲本 TK6 细胞和空载体(EV)转导细胞的 CYP 水平可忽略不计。随后,我们使用 2 种典型的多环芳烃诱变剂,7,12-二甲基苯并[a]蒽(DMBA)和苯并[a]芘(B[a]P),评估了这些细胞系,这些化合物需要代谢激活才能发挥其遗传毒性。与 EV 对照相比,过表达 CYP1A1、1B1、2B6 和 2C19 的 TK6 细胞中,DMBA 诱导的细胞毒性、组蛋白 H2A.X 的磷酸化和微核形成显著增加。与 EV 对照相比,过表达 CYP1A1 和 1B1 的 TK6 细胞中,B[a]P 显著增加了细胞毒性、DNA 损伤和染色体损伤。B[a]P 还诱导表达 CYP1A2 的 TK6 细胞形成微核。这些结果表明,我们的 CYP 表达 TK6 细胞系统可用于检测需要代谢转化的化合物的遗传毒性。

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