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APP/PS1小鼠白质和有髓纤维的性别差异以及跑步运动对AD小鼠性别差异的影响

Sex Differences in the White Matter and Myelinated Fibers of APP/PS1 Mice and the Effects of Running Exercise on the Sex Differences of AD Mice.

作者信息

Zhou Chun-Ni, Chao Feng-Lei, Zhang Yi, Jiang Lin, Zhang Lei, Luo Yan-Min, Xiao Qian, Chen Lin-Mu, Tang Yong

机构信息

Department of Histology and Embryology, Chongqing Medical University, Chongqing, China.

Laboratory of Stem Cells and Tissue Engineering, Chongqing Medical University, Chongqing, China.

出版信息

Front Aging Neurosci. 2018 Aug 17;10:243. doi: 10.3389/fnagi.2018.00243. eCollection 2018.

Abstract

Previous studies have suggested that changes in the white matter might play an important role in the pathogenic processes of Alzheimer's disease (AD). However, no study has investigated sex differences in these changes. Previous studies found that running exercise could delay both the decline in spatial learning and memory abilities as well as the changes in the white matter during early AD in male mice. However, whether exercise also has an effect on the changes in the white matter in female AD mice remains unknown. To address these questions, 6- and 10-month-old male and female APP/PS1 double transgenic AD mice were used. The 6-month-old male and female APP/PS1 double transgenic AD mice underwent a 4-month running exercise regime. The white matter volume and parameters of the myelinated fibers in the white matter of the 10-month-old exercised and non-exercised male and female AD mice were investigated using electron microscopy and stereological methods. There were no significant differences in the mean escape latencies between the male and female AD mice in the non-exercised groups, but after 4 months of treadmill exercise, the mean escape latencies of the female exercised AD mice had significantly shortened compared with those of the male exercised AD mice. The total white matter volume and most of the parameters of the myelinated fibers of the white matter in the female AD mice were significantly lower than those of the male AD mice. The total length of the myelinated fibers with diameters ranging from 0.6 to 0.7 μm, the axonal diameter of the myelinated fibers and the g-ratio of the myelinated fibers in the white matter of the exercised female AD mice were significantly increased compared with those of the non-exercised female AD mice. There were sex-specific differences in the white matter and myelinated fibers of white matter in the AD mice. Running exercise more effectively delayed the decline in spatial learning and memory abilities and delayed the changes in the myelinated fibers of the white matter in female transgenic mice with early AD than in male transgenic mice.

摘要

先前的研究表明,白质变化可能在阿尔茨海默病(AD)的致病过程中起重要作用。然而,尚无研究调查这些变化中的性别差异。先前的研究发现,跑步运动可以延缓雄性小鼠在早期AD期间空间学习和记忆能力的下降以及白质变化。然而,运动对雌性AD小鼠白质变化是否也有影响仍不清楚。为了解决这些问题,使用了6个月和10个月大的雄性和雌性APP/PS1双转基因AD小鼠。6个月大的雄性和雌性APP/PS1双转基因AD小鼠进行了为期4个月的跑步运动。使用电子显微镜和体视学方法研究了10个月大的运动和未运动的雄性和雌性AD小鼠白质的白质体积和有髓纤维参数。未运动组中雄性和雌性AD小鼠的平均逃避潜伏期没有显著差异,但在跑步机运动4个月后,运动的雌性AD小鼠的平均逃避潜伏期与运动的雄性AD小鼠相比显著缩短。雌性AD小鼠白质的总体积和大多数有髓纤维参数显著低于雄性AD小鼠。与未运动的雌性AD小鼠相比,运动的雌性AD小鼠白质中直径为0.6至0.7μm的有髓纤维总长度、有髓纤维的轴突直径和有髓纤维的g比值显著增加。AD小鼠的白质和白质有髓纤维存在性别特异性差异。与雄性转基因小鼠相比,跑步运动更有效地延缓了早期AD雌性转基因小鼠空间学习和记忆能力的下降,并延缓了白质有髓纤维的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1039/6107833/a91bb91e4b83/fnagi-10-00243-g0001.jpg

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