Translational Laboratory in Genetic Medicine (TLGM), Agency for Science, Technology and Research (A*STAR), 138648, Singapore; Department of Psychology, The University of Sheffield, S1 2LT, UK.
Translational Laboratory in Genetic Medicine (TLGM), Agency for Science, Technology and Research (A*STAR), 138648, Singapore.
Neurobiol Dis. 2019 Jul;127:65-75. doi: 10.1016/j.nbd.2019.02.011. Epub 2019 Feb 23.
Structural and molecular myelination deficits represent early pathological features of Huntington disease (HD). Recent evidence from germ-free (GF) animals suggests a role for microbiota-gut-brain bidirectional communication in the regulation of myelination. In this study, we aimed to investigate the impact of microbiota on myelin plasticity and oligodendroglial population dynamics in the mixed-sex BACHD mouse model of HD. Ultrastructural analysis of myelin in the corpus callosum revealed alterations of myelin thickness in BACHD GF compared to specific-pathogen free (SPF) mice, whereas no differences were observed between wild-type (WT) groups. In contrast, myelin compaction was altered in all groups when compared to WT SPF animals. Levels of myelin-related proteins were generally reduced, and the number of mature oligodendrocytes was decreased in the prefrontal cortex under GF compared to SPF conditions, regardless of genotype. Minor differences in commensal bacteria at the family and genera levels were found in the gut microbiota of BACHD and WT animals housed in standard living conditions. Our findings indicate complex effects of a germ-free status on myelin-related characteristics, and highlight the adaptive properties of myelination as a result of environmental manipulation.
结构和分子髓鞘缺陷是亨廷顿病(HD)的早期病理特征。来自无菌(GF)动物的最新证据表明,微生物群-肠道-大脑的双向通讯在调节髓鞘形成中起作用。在这项研究中,我们旨在研究微生物群对混合性别 BACHD HD 小鼠模型中髓鞘可塑性和少突胶质细胞群体动力学的影响。胼胝体髓鞘的超微结构分析显示,与特定病原体自由(SPF)小鼠相比,BACHD GF 中的髓鞘厚度发生了改变,而 WT 组之间没有差异。相比之下,与 WT SPF 动物相比,所有组的髓鞘致密化都发生了改变。与 SPF 条件相比,无论基因型如何,GF 条件下前额皮质中的髓鞘相关蛋白水平普遍降低,成熟少突胶质细胞数量减少。在标准生活条件下饲养的 BACHD 和 WT 动物的肠道微生物群中,在科和属水平上发现了共生菌的微小差异。我们的研究结果表明,无菌状态对髓鞘相关特征有复杂的影响,并强调了环境操作导致髓鞘形成的适应性特性。