母体接触纳米氧化锌会导致后代耳蜗功能障碍

Luisa Campagnolo, V. Lacconi, Roberta Bernardini, Andrea Viziano, Antonio Pietroiusti, Lorenzo Ippoliti, A. Moleti, R. Sisto
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摘要

导言:氧化锌纳米粒子(ZnO NPs)已被设计并广泛应用于材料科学和工业领域。这种材料的使用量越来越大,因此有必要对其对人体的毒性进行仔细研究。研究还涉及生殖毒性和胎儿毒性:材料和方法:在一组怀孕的 CD1 小鼠及其后代中研究了接触氧化锌氮氧化物对耳蜗功能的影响。这项研究是关于妊娠期氧化锌氮氧化物毒性的大型毒理学研究的一部分。研究人员对四组小鼠进行了分析和比较,即暴露和未暴露的母鼠及其后代。结果和讨论:未暴露母鼠的后代与暴露母鼠的后代之间存在巨大的统计学差异(p = 1.6 - 10-3),后者的 DPOAE 水平明显低于未暴露母鼠的后代,与成年母鼠的 DPOAE 水平相当。暴露和未暴露的母体的 DPOAE 水平非常低,没有显著差异。这种情况的出现与这些小鼠的快速衰老过程有关:我们的研究结果表明,母体暴露于氧化锌氮氧化物不会对胎儿发育产生明显的毒性,也不会影响后代的出生,但可能会损害后代的内耳神经组织。其他研究应证实这一结果,并确定氧化锌氮氧化物可能影响耳朵发育的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Maternal exposure to zinc oxide nanoparticles causes cochlear dysfunction in the offspring
Introduction: Zinc oxide nanoparticles (ZnO NPs) have been engineered and are largely used in material science and industry. This large and increasing use justifies a careful study about the toxicity of this material for human subjects. The concerns regard also the reproductive toxicity and the fetotoxicity.Materials and methods: The effect of the exposure to ZnO NPs on the cochlear function was studied in a group of pregnant CD1 mice and in their offspring. This study is part of a larger toxicological study about the toxicity of ZnO NPs during pregnancy. Four groups were analyzed and compared, exposed and non-exposed dams and their offspring. The cochlear function was quantitatively assessed by means of Distortion Product Otoacoustic Emissions (DPOAEs).Results and discussion: A large statistically significant difference was found between the non-exposed dams offspring and the exposed dams offspring (p = 1.6 · 10−3), whose DPOAE levels were significantly lower than those of non-exposed dams offspring and comparable to those of the adults. The DPOAE levels of the exposed and non-exposed dams were very low and not significantly different. This occurrence is related to the fact that these mice encounter a rapid aging process.Conclusion: Our findings show that maternal exposure to ZnO NPs does not reflect in overt toxicity on fetal development nor impair offspring birth, however it may damage the nervous tissue of the inner ear in the offspring. Other studies should confirm this result and identify the mechanisms through which ZnO NPs may affect ear development.
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