低频噪声和全身振动引起暴露小鼠脾细胞姐妹染色单体交换水平增加。

M. J. Silva, A. Dias, A. Barreta, P. Nogueira, N.A.A. Castelo-Branco, M. Boavida
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引用次数: 37

摘要

长期暴露于低频(LF)噪声和全身振动(WBV)会引起人的生理和心理变化。最近,我们已经表明,长期职业性暴露于低频噪声和WBV对人类产生遗传毒性作用,表现为淋巴细胞中姐妹染色单体交换(SCE)水平的增加。本研究的目的是研究所观察到的效果是否可以在小鼠模型中重现,如果可以,那么低频噪声单独或与WBV联合使用哪一种因素将有助于SCE的诱导。分别对单独暴露于低频噪声和与WBV联合暴露300和600小时的小鼠脾脏淋巴细胞进行sce分析。对细胞周期动力学水平的影响也进行了研究。结果显示,与对照组相比,噪声和WBV联合作用下小鼠每个细胞的平均SCE数和淋巴细胞中SCE高频细胞(hfc)的比例显著增加。在单噪声暴露小鼠和对照小鼠之间没有发现显著差异。细胞周期延迟仅在噪声和白细胞暴露组中观察到。总之,我们证明,与暴露工人一样,长时间暴露于低低频噪声和白面噪声的组合决定了小鼠SCE水平的增加,而低低频噪声单独对SCE诱导无效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low frequency noise and whole-body vibration cause increased levels of sister chromatid exchange in splenocytes of exposed mice.
Chronic exposure to low frequency (LF) noise and whole-body vibration (WBV) induces both physiological and psychological alterations in man. Recently, we have shown that long-term occupational exposure to LF noise and WBV produces genotoxic effects in man expressed as an increase in sister chromatid exchange (SCE) levels in lymphocytes. The objectives of the present study were to investigate whether the observed effect could be reproduced in a murine model and, if so, which of the agents, LF noise alone or in combination with WBV, would be instrumental in the SCE induction. SCEs were analyzed in spleen lymphocytes of mice exposed to LF noise alone and in combination with WBV for 300 and 600 hr. An effect at the cell cycle kinetics level was also investigated. The results revealed significant increases in the mean SCE number per cell and in the proportion of cells with high frequency of SCEs (HFCs) in lymphocytes of mice submitted to combined noise and WBV over controls. No significant differences were found between single noise-exposed and control mice. A cell cycle delay was observed exclusively in the noise and WBV exposure groups. In conclusion, we demonstrated that, as in exposed workers, prolonged exposure to the combination of LF noise and WBV determines an increase in SCE level in mice while LF noise alone is not effective in SCE induction.
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