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氧化石墨烯对 W 果蝇的毒性。

Graphene oxide toxicity in W flies.

机构信息

State Key Laboratory of Radiation Medicine and Protection, School for Radiological and Interdisciplinary Sciences (RAD-X), Collaborative Innovation Center of Radiation Medicine of Jiangsu Higher Education Institutions, Soochow University, Suzhou 215123, China.

State Key Laboratory of Radiation Medicine and Protection, School for Radiological and Interdisciplinary Sciences (RAD-X), Collaborative Innovation Center of Radiation Medicine of Jiangsu Higher Education Institutions, Soochow University, Suzhou 215123, China.

出版信息

Sci Total Environ. 2022 Jan 20;805:150302. doi: 10.1016/j.scitotenv.2021.150302. Epub 2021 Sep 11.

Abstract

The risk of graphene oxide (GO) exposure to various species has been greatly amplified in recent years due to its booming production and applications in various fields. However, a deep understanding of the GO biosafety lags its wide applications. Herein, we used W flies as a model organism to study GO toxicity at relatively low concentrations. We found that GO exposure led to remarkable weight loss, delayed development, retarded motion, and shortened lifespan of these flies. On the other hand, the GO influence on their sex ratio and the total number of pupae and adults were insignificant. The toxicological effect of GO was shown to be related to its serious compromise of the nutrient absorption in flies due to the severe damages in midguts. These damages were then attributed to the excessive accumulation of reactive oxygen species (ROS), which triggers the oxidative stress. These findings reveal the underlying mechanisms of GO biotoxicities in fruit flies, which might provide a useful reference to assess the risks of these newly invented nanomaterials likely never encountered by various species before.

摘要

近年来,由于石墨烯氧化物(GO)在各个领域的大量生产和应用,其对各种物种的暴露风险大大增加。然而,由于其广泛的应用,人们对 GO 的生物安全性的理解还不够深入。在此,我们使用果蝇作为模型生物来研究相对较低浓度的 GO 毒性。我们发现,GO 暴露会导致这些果蝇明显的体重减轻、发育迟缓、运动迟缓以及寿命缩短。另一方面,GO 对它们的性别比例以及蛹和成虫总数的影响并不显著。GO 的毒性作用与其对果蝇营养吸收的严重损害有关,这是由于中肠的严重损伤导致的。这些损伤随后归因于活性氧(ROS)的过度积累,从而引发氧化应激。这些发现揭示了 GO 在果蝇中的生物毒性的潜在机制,这可能为评估这些新发明的纳米材料的风险提供有用的参考,这些材料可能是各种物种以前从未遇到过的。

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