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首页> 外文期刊>Mutation research-Fundamental and Molecular Mechanisms of Mutagenesis >Potential genotoxic effects of low-intensity ultrasound on fibroblasts, evaluated with the cytokinesis-block micronucleus assay
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Potential genotoxic effects of low-intensity ultrasound on fibroblasts, evaluated with the cytokinesis-block micronucleus assay

机译:通过细胞分裂阻滞微核试验评估低强度超声对成纤维细胞的潜在遗传毒性作用

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Although medical ultrasound offers compelling opportunities to improve therapy in principle, progress in the field has been limited because of an insufficient understanding of the potential genotoxic and cytotoxic effects of ultrasound on biological systems. This paper is mainly focused on an in vitro study of effects with respect to genotoxicity and viability induced by 1- and 3-MHz medical ultrasound in murine fibroblasts (NIH-3T3) at low-intensity exposure (spatial peak temporal average intensity Ita < 0.1 W/cm2). The NIH-3T3 cells constitute a well-characterized in vitro cell model in which a genotoxic effect can be predicted by means of a reliable and precise murine cytokinesis-block micronucleus assay. A statistically significant increase in the incidence of micronuclei was observed in sonicated 3T3 cells. In particular, the effects were more evident at 1 MHz. Moreover, for each frequency investigated, the occurrence of micronuclei was comparatively more frequent with increasing time of exposure. The possible toxico-logical implications of the medical ultrasound employed herein deal with the existence of a window of exposure parameters (set well below the intensity of ultrasound cavitation) in which some genotoxic effects may occur without significant cytotoxicity. In this respect, they provide new insight toward the correct risk to benefit balancing of ultrasound-based treatments and for designing innovative therapeutic strategies.
机译:尽管医学超声原则上提供了令人信服的机会来改善治疗,但是由于对超声对生物系统的潜在遗传毒性和细胞毒性作用的了解不足,该领域的进展受到了限制。本文主要集中于在低强度暴露(空间峰值时间平均强度Ita <0.1)下通过1和3 MHz医学超声对鼠成纤维细胞(NIH-3T3)的遗传毒性和生存力的影响的体外研究。 W / cm2)。 NIH-3T3细胞构成了一个很好表征的体外细胞模型,其中可以通过可靠而精确的鼠胞质阻滞微核试验来预测遗传毒性作用。在超声处理的3T3细胞中观察到微核发生率的统计上显着增加。特别是在1 MHz时,影响更为明显。此外,对于每个调查的频率,随着暴露时间的增加,微核的发生相对更加频繁。本文采用的医学超声的可能的毒理学意义涉及暴露参数窗口的存在(设置为远低于超声空化的强度),在该窗口中可能会发生某些遗传毒性作用而没有明显的细胞毒性。在这方面,他们为正确的风险提供了新的见解,以有益于平衡基于超声的治疗方法和设计创新的治疗策略。

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