Crosstalk Between the Mitochondrial Dynamics and Oxidative Stress in Zinc-induced Cytotoxicity

被引:0
作者
Qingwen Yang
Junjie Yang
Xuesong Liu
Yi Zhang
Yue Li
Da Ao
Peng Zhong
Kang Yong
机构
[1] Chongqing Three Gorges Vocational College,Laboratory of Veterinary Pharmacology, Department of Animal Science and Technology
[2] Guangdong Ocean University,College of Coastal Agricultural Sciences
[3] Laboratory of Veterinary Pharmacology,Teaching and Research Section of Pet Medicine
[4] Branch of Animal Husbandry and Veterinary of Heilongjiang Academy of Agricultural Sciences,School of Pharmaceutical
[5] Pengpeng Pet Technical College,undefined
[6] Liaoning Agricultural Technical College,undefined
[7] Changzhou University,undefined
来源
Biological Trace Element Research | 2023年 / 201卷
关键词
Zinc; Mitochondrial dynamics; Oxidative stress; Cytotoxicity;
D O I
暂无
中图分类号
学科分类号
摘要
Zinc is an essential trace element, which plays an important role in multiple biological activities. However, excessive exposure to zinc can cause toxic damage to living organism. Here, we investigated the relationship between oxidative stress and mitochondrial dynamics in the zinc-induced cytotoxicity. Results showed that excess exposure to zinc could significantly reduce cell viability and induce cell vacuolation in PK-15 cells. Additionally, zinc exposure caused mitochondrial dynamics disorder, manifested as mitochondrial fission, and the elevated mRNA level of Drp1 and downregulated mRNA levels of OPA1, Mfn1, and Mfn2. Meanwhile, zinc could induce oxidative damage, evidenced by the increasing levels of hydrogen peroxide, malondialdehyde, lipid peroxidation, oxidized form of nicotinamide adenine dinucleotide phosphate/nicotinamide adenine dinucleotide phosphate, oxidized glutathione/glutathione, superoxide dismutase activity, and the mRNA expression of SOD-1 and NOQ1, and decreasing levels of catalase activity, glutathione peroxidase activity, glutathione reductase activity, and the mRNA expression of CAT, and GPX1. Interestingly, N-acetyl-L-cysteine, an inhibitor for oxidative stress, could reduce the mitochondrial fission under zinc treatment. Besides, Mdivi-1, a mitochondrial fission inhibitor, could relieve oxidative stress caused by excess zinc. In general, these results suggested that mitochondrial fission and oxidative stress induced by zinc were interrelated in PK-15 cells, which is conducive to explore the new mechanism of zinc toxicity and proposes a theoretical foundation for selecting effective drugs to alleviate the toxic effects caused by zinc.
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页码:4419 / 4428
页数:9
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