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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Adaptive response to ionizing radiation-induced chromosome aberrations in rabbit lymphocytes: effect of pre-exposure to zinc, and copper salts.
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Adaptive response to ionizing radiation-induced chromosome aberrations in rabbit lymphocytes: effect of pre-exposure to zinc, and copper salts.

机译:对兔淋巴细胞中电离辐射诱导的染色体畸变的适应性反应:锌和铜盐的预暴露效应。

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摘要

Various stress conditions including exposure to low-dose radiation and low concentrations of chemical mutagens can induce an adaptive response to subsequent radiation-induced chromosome damage. In this study, the effect of pretreatment of rabbit lymphocytes with zinc or copper salts on radiation-induced chromosome damage was investigated. Pretreatment of rabbit peripheral lymphocytes with Zn (50 microM in vitro or 100 mumol/g body weight in vivo) resulted in resistance to gamma radiation (2.0 Gy)-induced chromosome aberrations such as dicentrics plus centric rings and cells with chromosome aberrations. On the other hand, pretreatment with Cu (50 microM in vitro) did not show any protective effect on radiation-induced chromosome damage in rabbit lymphocytes. However, the concentration of metallothionein increased in activated lymphocytes 24 h after in vitro pretreatment with both Zn and Cu. In addition, gamma-radiation-induced calf thymus DNA damage could be prevented directly by the addition of Zn-metallothionein in the cell-free system. These results suggest that the induction of zinc-metallothionein synthesis may act as one of the defensive mechanisms to the induction of cytogenetic adaptive response to ionizing radiation while copper-metallothionein did not show any radioprotective effect.
机译:包括暴露于低剂量辐射和低浓度的化学诱变剂在内的各种应激条件均可诱导对随后辐射诱导的染色体损伤的适应性反应。在这项研究中,研究了用锌或铜盐预处理兔淋巴细胞对辐射诱导的染色体损伤的影响。用锌(体外50 microM或体内100 mumol / g体重)预处理兔外周血淋巴细胞可抵抗由伽马射线(2.0 Gy)诱导的染色体畸变,例如双着丝粒加上中心环和具有染色体畸变的细胞。另一方面,用铜(体外50 microM)预处理对兔淋巴细胞辐射诱导的染色体损伤没有显示任何保护作用。然而,在用锌和铜进行体外预​​处理后24小时,活化淋巴细胞中金属硫蛋白的浓度增加。此外,通过在无细胞系统中添加Zn-金属硫蛋白可以直接防止γ射线辐射引起的小牛胸腺DNA损伤。这些结果表明,锌金属硫蛋白合成的诱导可能是诱导对电离辐射的细胞遗传适应性反应的防御机制之一,而铜金属硫蛋白则没有显示任何辐射防护作用。

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