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Mdivi-1 通过改善线粒体动力学和海马可塑性来挽救东莨菪碱诱导的健忘症雄性小鼠的记忆下降。

Mdivi-1 Rescues Memory Decline in Scopolamine-Induced Amnesic Male Mice by Ameliorating Mitochondrial Dynamics and Hippocampal Plasticity.

机构信息

Biochemistry and Molecular Biology Laboratory, Centre of Advanced Study, Department of Zoology, Institute of Science, Banaras Hindu University, Varanasi, 221 005, India.

出版信息

Mol Neurobiol. 2023 Sep;60(9):5426-5449. doi: 10.1007/s12035-023-03397-6. Epub 2023 Jun 14.

Abstract

Memory loss, often known as amnesia, is common in the elderly population and refers to forgetting facts and experiences. It is associated with increased mitochondrial fragmentation, though the contribution of mitochondrial dynamics in amnesia is poorly understood. Therefore, the present study is aimed at elucidating the role of Mdivi-1 in mitochondrial dynamics, hippocampal plasticity, and memory during scopolamine (SC)-induced amnesia. The findings imply that Mdivi-1 significantly increased the expression of Arc and BDNF proteins in the hippocampus of SC-induced amnesic mice, validating improved recognition and spatial memory. Moreover, an improved mitochondrial ultrastructure was attributed to a decline in the percentage of fragmented and spherical-shaped mitochondria after Mdivi-1 treatment in SC-induced mice. The significant downregulation of p-Drp1 (S616) protein and upregulation of Mfn2, LC3BI, and LC3BII proteins in Mdivi-1-treated SC-induced mice indicated a decline in fragmented mitochondrial number and healthy mitochondrial dynamics. Mdivi-1 treatment alleviated ROS production and Caspase-3 activity and elevated mitochondrial membrane potential, Vdac1 expression, ATP production, and myelination, resulting in reduced neurodegeneration in SC mice. Furthermore, the decline of pro-apoptotic protein cytochrome-c and increase of anti-apoptotic proteins Procaspase-9 and Bcl-2 in Mdivi-1-treated SC-induced mice suggested improved neuronal health. Mdivi-1 also increased the dendritic arborization and spine density, which was further corroborated by increased expression of synaptophysin and PSD95. In conclusion, the current study suggests that Mdivi-1 treatment improves mitochondrial ultrastructure and function through the regulation of mitochondrial dynamics. These changes further improve neuronal cell density, myelination, dendritic arborization, and spine density, decrease neurodegeneration, and improve recognition and spatial memory. Schematic presentation depicts that Mdivi-1 rescues memory decline in scopolamine-induced amnesic male mice by ameliorating mitochondrial dynamics and hippocampal plasticity.

摘要

记忆丧失,通常称为健忘症,在老年人群中很常见,是指忘记事实和经历。它与线粒体碎片化增加有关,但线粒体动力学在健忘症中的作用知之甚少。因此,本研究旨在阐明 Mdivi-1 在东莨菪碱(SC)诱导的健忘症中线粒体动力学、海马可塑性和记忆中的作用。研究结果表明,Mdivi-1 显著增加了 SC 诱导的健忘症小鼠海马中 Arc 和 BDNF 蛋白的表达,验证了识别和空间记忆的改善。此外,Mdivi-1 处理后,线粒体超微结构得到改善,破碎和球形线粒体的百分比下降。Mdivi-1 处理的 SC 诱导小鼠中 p-Drp1(S616)蛋白的显著下调和 Mfn2、LC3BI 和 LC3BII 蛋白的上调表明,破碎的线粒体数量减少,线粒体动力学健康。Mdivi-1 处理减轻了 ROS 产生和 Caspase-3 活性,提高了线粒体膜电位、Vdac1 表达、ATP 产生和髓鞘形成,从而减少了 SC 小鼠的神经退行性变。此外,Mdivi-1 处理的 SC 诱导小鼠中促凋亡蛋白细胞色素-c 的下降和抗凋亡蛋白 Procaspase-9 和 Bcl-2 的增加表明神经元健康状况得到改善。Mdivi-1 还增加了树突分支和棘密度,这进一步得到突触小体相关蛋白和 PSD95 表达增加的证实。总之,本研究表明,Mdivi-1 通过调节线粒体动力学改善线粒体超微结构和功能。这些变化进一步改善了神经元细胞密度、髓鞘形成、树突分支和棘密度,减少了神经退行性变,并改善了识别和空间记忆。示意图表明,Mdivi-1 通过改善线粒体动力学和海马可塑性来挽救东莨菪碱诱导的健忘症雄性小鼠的记忆下降。

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