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线粒体依赖性氧化应激介导了 ZnO 纳米颗粒(ZnO NP)诱导的淡水硬骨鱼细胞自噬和脂毒性。

Mitochondria-Dependent Oxidative Stress Mediates ZnO Nanoparticle (ZnO NP)-Induced Mitophagy and Lipotoxicity in Freshwater Teleost Fish.

机构信息

Hubei Hongshan Laboratory, Fishery College, Huazhong Agricultural University, Wuhan 430070, China.

Diabetes and Nutritional Sciences Division, School of Medicine, King's College London, London WC2R 2LS, U.K.

出版信息

Environ Sci Technol. 2022 Feb 15;56(4):2407-2420. doi: 10.1021/acs.est.1c07198. Epub 2022 Feb 2.

Abstract

Due to many special characteristics, zinc oxide nanoparticles (ZnO NPs) are widely used all over the world, leading to their wide distribution in the environment. However, the toxicities and mechanisms of environmental ZnO NP-induced changes of physiological processes and metabolism remain largely unknown. Here, we found that addition of dietary ZnO NPs disturbed hepatic Zn metabolism, increased hepatic Zn and lipid accumulation, downregulated lipolysis, induced oxidative stress, and activated mitophagy; ,,','-tetrakis (2-pyridylmethyl) ethylenediamine (TPEN, Zn ions chelator) alleviated high ZnO NP-induced Zn and lipid accumulation, oxidative stress, and mitophagy. Mechanistically, the suppression of mitochondrial oxidative stress attenuated ZnO NP-activated mitophagy and ZnO NP-induced lipotoxicity. Taken together, our study elucidated that mitochondrial oxidative stress mediated ZnO NP-induced mitophagy and lipotoxicity; ZnO NPs could be dissociated to free Zn ions, which partially contributed to ZnO NP-induced changes in oxidative stress, mitophagy, and lipid metabolism. Our study provides novel insights into the impacts and mechanism of ZnO NPs as harmful substances inducing lipotoxicity of aquatic organisms, and accordingly, metabolism-relevant parameters will be useful for the risk assessment of nanoparticle materials in the environment.

摘要

由于氧化锌纳米粒子(ZnO NPs)具有许多特殊性质,因此被广泛应用于全球各个领域,导致其在环境中广泛分布。然而,环境中 ZnO NPs 引起的生理过程和代谢变化的毒性及其机制在很大程度上仍然未知。在这里,我们发现膳食 ZnO NPs 的添加扰乱了肝脏的锌代谢,增加了肝脏的锌和脂质积累,下调了脂肪分解,诱导了氧化应激,并激活了线粒体自噬;,,','-四(2-吡啶甲基)乙二胺(TPEN,锌离子螯合剂)减轻了高浓度 ZnO NP 引起的锌和脂质积累、氧化应激和线粒体自噬。从机制上讲,线粒体氧化应激的抑制减弱了 ZnO NP 激活的线粒体自噬和 ZnO NP 诱导的脂肪毒性。综上所述,我们的研究阐明了线粒体氧化应激介导的 ZnO NP 诱导的线粒体自噬和脂肪毒性;ZnO NPs 可以解离为游离的 Zn 离子,这部分导致了 ZnO NP 引起的氧化应激、线粒体自噬和脂质代谢变化。我们的研究为 ZnO NPs 作为有害物质诱导水生生物脂肪毒性的影响和机制提供了新的见解,因此,代谢相关参数将有助于对环境中纳米颗粒材料的风险评估。

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