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氧化应激加速了甲基汞诱导的大鼠大脑皮质神经元凋亡过程中突触谷氨酸代谢失衡和 NMDA 受体紊乱。

Oxidative stress accelerates synaptic glutamate dyshomeostasis and NMDARs disorder during methylmercury-induced neuronal apoptosis in rat cerebral cortex.

机构信息

Department of Environmental Health, School of Public Health, China Medical University, Shenyang, Liaoning Province, People's Republic of China.

出版信息

Environ Toxicol. 2020 Jun;35(6):683-696. doi: 10.1002/tox.22904. Epub 2020 Feb 15.

DOI:10.1002/tox.22904
PMID:32061141
Abstract

Methylmercury (MeHg) is a potent neurotoxin,which leads to a wide range of intracellular effects. The molecular mechanismsassociated to MeHg-induced neurotoxicity have not been fully understood.Oxidative stress, as well as synaptic glutamate (Glu) dyshomeostasis have beenidentified as two critical mechanisms during MeHg-mediated cytotoxicity. Here,we developed a rat model of MeHg poisoning to evaluate its neurotoxic effectsby focusing on cellular oxidative stress and synaptic Glu disruption. Inaddition, we investigated the neuroprotective role of alpha-lipoic acid (α-LA), a natural antioxidant, todeeply explore the underlying interaction between them. Fifty-six rats wererandomly divided into four groups: saline control, MeHg treatment (4 or 12μmol/kg MeHg), and α-LApre-treatment (35 μmol/kg α-LA+12μmol/kg MeHg). Rats exposed to 12 μmol/kg MeHg induced neuronal oxidativestress, with ROS accumulation and cellular antioxidant system impairment. Nrf2 andxCT pathways were activated with MeHg treatment. The enzymatic or non-enzymaticof cellular GSH synthesis were also disrupted by MeHg. On the other hand, the abnormalactivities of GS and PAG disturbed the "Glu-Gln cycle", leading to NMDARsover-activation, Ca2+ overload, and the calpain activation, which acceleratedNMDARs degradation. Meanwhile, the high expressions of phospho-p44/42 MAPK,phospho-p38 MAPK, phospho-CREB, and the high levels of caspase 3 and Bax/Bcl-2 finallyindicated the neuronal apoptosis after MeHg exposure. Pre-treatment with α-LA significantly preventedMeHg-induced neurotoxicity. In conclusion, the oxidative stress and synapticGlu dyshomeostasis contributed to MeHg-induced neuronal apoptosis. Alpha-LAattenuated these toxic effects through mechanisms of anti-oxidation andindirect Glu dyshomeostasis prevention.

摘要

甲基汞(MeHg)是一种强效的神经毒素,可导致广泛的细胞内效应。MeHg 诱导的神经毒性的分子机制尚未完全阐明。氧化应激以及突触谷氨酸(Glu)稳态失调已被确定为 MeHg 介导的细胞毒性过程中的两个关键机制。在这里,我们建立了一个 MeHg 中毒的大鼠模型,通过关注细胞氧化应激和突触 Glu 破坏来评估其神经毒性作用。此外,我们研究了α-硫辛酸(α-LA)的神经保护作用,以深入探讨它们之间的潜在相互作用。将 56 只大鼠随机分为四组:生理盐水对照、MeHg 处理(4 或 12μmol/kg MeHg)和 α-LA 预处理(35 μmol/kg α-LA+12μmol/kg MeHg)。暴露于 12μmol/kg MeHg 的大鼠诱导神经元氧化应激,ROS 积累和细胞抗氧化系统受损。Nrf2 和 xCT 途径在 MeHg 处理时被激活。细胞 GSH 合成的酶或非酶途径也被 MeHg 破坏。另一方面,GS 和 PAG 的异常活性扰乱了“Glu-Gln 循环”,导致 NMDAR 过度激活、Ca2+超载和钙蛋白酶激活,加速 NMDAR 降解。同时,磷酸化 p44/42 MAPK、磷酸化 p38 MAPK、磷酸化 CREB、caspase 3 和 Bax/Bcl-2 的高表达最终表明 MeHg 暴露后神经元凋亡。α-LA 的预处理可显著预防 MeHg 诱导的神经毒性。总之,氧化应激和突触 Glu 稳态失调导致 MeHg 诱导的神经元凋亡。α-LA 通过抗氧化和间接预防 Glu 稳态失调的机制减轻了这些毒性作用。

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