首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >In vivo Comet assay on isolated kidney cells to distinguish genotoxic carcinogens from epigenetic carcinogens or cytotoxic compounds.
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In vivo Comet assay on isolated kidney cells to distinguish genotoxic carcinogens from epigenetic carcinogens or cytotoxic compounds.

机译:对分离的肾细胞进行体内彗星试验,以区分遗传毒性致癌物与表观遗传致癌物或细胞毒性化合物。

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摘要

The objective of this study was to determine the ability of the alkaline in vivo Comet assay (pH>13) to distinguish genotoxic carcinogens from epigenetic carcinogens when performed on freshly isolated kidney cells and to determine the possible interference of cytotoxicity by assessing DNA damage induced by renal genotoxic, epigenetic or toxic compounds after enzymatic isolation of kidney cells from OFA Sprague-Dawley male rats. The ability of the Comet assay to distinguish (1) genotoxicity versus cytotoxicity and (2) genotoxic versus non-genotoxic (epigenetic) carcinogens, was thus investigated by studying five known genotoxic renal carcinogens acting through diverse mechanisms of action, i.e. streptozotocin, aristolochic acids, 2-nitroanisole, potassium bromate and cisplatin, two rodent renal epigenetic carcinogens: d-limonene and ciclosporine and two nephrotoxic compounds: streptomycin and indomethacin. Animals were treated once with the test compound by the appropriate route of administration and genotoxic effects were measured at the two sampling times of 3-6 and 22-26h after treatment. Regarding the tissue processing, the limited background level of DNA migration observed in the negative control groups throughout all experiments demonstrated that the enzymatic isolation method implemented in the current study is appropriate. On the other hand, streptozotocin, 20mg/kg, used as positive reference control concurrently to each assay, caused a clear increase in the mean Olive Tail Moment median value, which allows validating the current methodology. Under these experimental conditions, the in vivo rodent Comet assay demonstrated good sensitivity and good specificity: all the five renal genotoxic carcinogens were clearly detected in at least one expression period either directly or indirectly, as in the case of cisplatin: for this cross-linking agent, the significant decrease in DNA migration observed under standard electrophoresis conditions was clearly amplified when the duration of electrophoresis was increased up to 40min. In contrast, epigenetic and nephrotoxic compounds failed to induce any signifcant increase in DNA migration. In conclusion, the in vivo rodent Comet assay performed on isolated kidney cells could be used as a tool to investigate the genotoxic potential of a test compound if neoplasic/preneoplasic changes occur after subchronic or chronic treatments, in order to determine the role of genotoxicity in tumor induction. Moreover, the epigenetic carcinogens and cytotoxic compounds displayed clearly negative responses in this study. These results allow excluding a DNA direct-acting mechanism of action and can thus suggest that a threshold exists. Therefore, the current in vivo rodent Comet assay could contribute to elucidate an epigenetic mechanism and thus, to undertake a risk assessment associated with human use, depending on the exposure level.
机译:这项研究的目的是确定在新鲜分离的肾细胞上进行碱性体内彗星试验(pH> 13)区分遗传毒性致癌物与表观遗传致癌物的能力,并通过评估由DNA诱导的DNA损伤来确定细胞毒性的可能干扰。酶分离自OFA Sprague-Dawley雄性大鼠肾脏细胞后的肾脏遗传毒性,表观遗传或毒性化合物。因此,通过研究五种已知的通过多种作用机理起作用的已知遗传毒性肾致癌物,即链脲佐菌素,马兜铃酸,对彗星试验区分(1)遗传毒性与细胞毒性以及(2)遗传毒性与非遗传毒性(表观遗传)致癌物的能力进行了研究。 ,2-硝基茴香醚,溴酸钾和顺铂,两种啮齿类动物肾脏表观遗传致癌物:d-柠檬烯和环孢菌素以及两种肾毒性化合物:链霉素和消炎痛。通过适当的给药途径用试验化合物对动物进行一次治疗,并在治疗后3-6和22-26h的两个采样时间测量遗传毒性作用。关于组织处理,在整个实验中在阴性对照组中观察到的有限的DNA迁移背景水平证明,在当前研究中实施的酶促分离方法是合适的。另一方面,在每次测定中同时用作阳性参照对照的链脲佐菌素20mg / kg导致平均橄榄尾矩中位数值明显增加,从而可以验证当前的方法。在这些实验条件下,体内啮齿类动物彗星试验显示出良好的敏感性和特异性:与顺铂一样,在至少一个表达期内,无论是直接表达还是间接表达,都清楚地检测到所有五种肾脏遗传毒性致癌物:当电泳时间延长至40分钟时,在标准电泳条件下观察到的DNA迁移的显着降低被明显放大。相反,表观遗传和肾毒性化合物未能引起DNA迁移的任何明显增加。总之,在亚慢性或慢性治疗后发生赘生物/新肿瘤改变后,对分离的肾细胞进行的体内啮齿类动物彗星试验可作为研究受试化合物遗传毒性潜力的工具,以确定遗传毒性的作用。肿瘤诱导。此外,表观遗传致癌物和细胞毒性化合物在这项研究中显示出明显的阴性反应。这些结果允许排除DNA直接作用机制,因此可以表明存在阈值。因此,当前的体内啮齿动物彗星试验可有助于阐明表观遗传机制,从而根据暴露水平进行与人类使用相关的风险评估。

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