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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Multiple genotoxic activities of ptaquiloside in human lymphocytes: aneugenesis, clastogenesis and induction of sister chromatid exchange.
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Multiple genotoxic activities of ptaquiloside in human lymphocytes: aneugenesis, clastogenesis and induction of sister chromatid exchange.

机译:普他洛洛糖苷在人淋巴细胞中的多种遗传毒性活性:无细胞生成,分裂发生和姐妹染色单体交换的诱导。

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摘要

Ptaquiloside, a norsesquiterpene glycoside from bracken (Pteridium aquilinum), is a known carcinogen towards animals. Its genotoxicity is mainly attributed to its DNA-alkylating and clastogenic properties. This study analyses various modes of genotoxic action of ptaquiloside in human mononuclear blood cells. The alkaline comet assay was performed on cells exposed to 5μg/ml ptaquiloside for 5, 10, 20, 30, 40 or 50min. Tail length was used as a DNA-damage parameter. Assays to determine structural and numerical chromosomal aberrations and sister-chromatid exchange were conducted on cells exposed to 5, 10 or 20μg/ml ptaquiloside for 48h. The tail length showed maximum DNA damage at 20-30min, diminishing onwards. Highly significant (p<0.001) dose-dependent increases in structural and numerical chromosomal aberrations and SCE were observed in response to ptaquiloside. These results indicate that ptaquiloside is not only a DNA-alkylating agent, but expresses its genotoxicity through multiple mechanisms including clastogenesis, aneugenesis and the mechanism underlying SCE induction, which is not entirely understood. Recent studies support the role played by aneuploidy in oncogenesis, highlighting the importance of this endpoint for mutagenicity screening. SCE are thought to represent the long-term effects of mutagens and are an important genotoxicity biomarker. The present results also agree with data from epidemiological studies and from animal in vivo studies, further supporting the hypothesis that ptaquiloside may represent a significant threat to human health.
机译:蕨菜苷,一种来自蕨菜的蕨类倍半萜烯糖苷,是已知的对动物致癌物。它的遗传毒性主要归因于其DNA烷基化和成胶性。这项研究分析了普他洛糖苷在人类单核血细胞中的多种遗传毒性作用模式。在暴露于5μg/ ml倍他洛糖苷的细胞上进行5分钟,10分钟,20分钟,30分钟,40分钟或50分钟的碱性彗星试验。尾巴长度用作DNA损伤参数。测定暴露于5、10或20μg/ ml摇头孢子苷48小时的细胞的结构和数值染色体畸变和姐妹染色单体交换的测定法。尾巴长度在20-30分钟时显示最大的DNA损伤,此后逐渐减小。观察到对帕奎洛甙的反应,在结构和数值上的染色体畸变和SCE的剂量依赖性增加非常显着(p <0.001)。这些结果表明,ptaquiloside不仅是一种DNA烷基化剂,而且还通过多种机制表达其遗传毒性,这些机制包括分裂发生,无细胞生成和SCE诱导的潜在机制,但尚未完全了解。最近的研究支持非整倍性在肿瘤发生中的作用,突出了该终点对于诱变性筛选的重要性。 SCE被认为代表了诱变剂的长期作用,并且是重要的遗传毒性生物标志物。本研究结果还与流行病学研究和动物体内研究的数据相吻合,进一步支持了普他洛糖苷可能对人类健康构成重大威胁的假说。

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