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Excessive apoptosis and disordered autophagy flux contribute to the neurotoxicity induced by high iodine in Sprague-Dawley rat

机译:过量的细胞凋亡和无序的自噬助剂有助于Sprague-Dawley大鼠高碘碘诱导的神经毒性

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摘要

In recent years, the detrimental effects of high iodine on intelligence are gaining tons of attention, but the relationship between high iodine and neurotoxicity is controversial. This study aimed to explore whether high iodine intake may impair intelligence and the roles of apoptosis and autophagy in high iodine-induced neurotoxicity. The results showed that high iodine exposure reduced brain coefficient and intelligence of rats, and caused histopathological abnormalities in hippocampus. Moreover, high iodine increased hippocampal apoptosis, as confirmed by elevation of apoptotic proteins and TUNEL-positive incidence. Further study showed that high iodine impaired mitochondrial ultrastructure and caused elevation of Bax, cytochrome c and decline of Bcl2, indicating the participation of mitochondrial apoptotic pathway. Simultaneously, high iodine also increased the number of autophagosomes. Intriguingly, the expression of autophagosomes formation protein Atg7, Beclin1 and autophagic substrate p62 were elevated, suggesting that the accumulated autophagosomes is not only due to the enhancement of formation but also the decline of clearance. These, together with the numerous damaged organelles observed in hippocampal ultrastructure, reveal the crucial role of disordered autophagy flux in high iodine-elicited neurotoxicity. Collectively, these findings suggest that excessive apoptosis and disordered autophagy flux contribute to high iodine-elicited neurotoxicity.
机译:近年来,高碘对智力的不利影响正在增加吨的关注,但高碘和神经毒性之间的关系是有争议的。本研究旨在探讨高碘摄入是否可能损害智力和凋亡和自噬在高碘诱导的神经毒性中的作用。结果表明,高碘暴露的大鼠脑系数和智力降低,并导致海马组织病理学异常。此外,高碘含量增加海马凋亡,通过凋亡蛋白和Turnel阳性发病率的升高来证实。进一步的研究表明,高碘损伤的线粒体超微结构和引起的BAX,细胞色素C和BCL2的下降,表明线粒体凋亡途径的参与。同时,高碘也增加了自噬体的数量。有趣的是,自噬骨膜形成蛋白ATG7,BECLIN1和自噬底物P62的表达升高,表明累积的自噬体不仅是由于形成的增强而且随着间隙的下降。这些与在海马超微结构中观察到的众多受损的细胞器一起,揭示了在高碘引发神经毒性中无序的自噬通量的至关重要的作用。总的来说,这些研究结果表明,过量的凋亡和无序的自噬助剂有助于高碘引发的神经毒性。

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