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年轻供体小鼠粪便微生物群移植可改善老年小鼠的卵巢功能。

Fecal microbiota transplantation from young donor mice improves ovarian function in aged mice.

机构信息

State Key Laboratory of Reproductive Medicine, Nanjing Medical University, Nanjing, Jiangsu 211166, China.

Department of Pathogen Biology-Microbiology Division, State Key Laboratory of Reproductive Medicine, Nanjing Medical University, Nanjing, Jiangsu 211166, China; Shanghai Personal Biotechnology, Shanghai 200231, China.

出版信息

J Genet Genomics. 2022 Nov;49(11):1042-1052. doi: 10.1016/j.jgg.2022.05.006. Epub 2022 May 30.

Abstract

Advanced maternal age is characterized by declines in the quantity and quality of oocytes in the ovaries, and the aging process is accompanied by changes in gut microbiota composition. However, little is known about the relationship between gut microbiota and ovarian aging. By using fecal microbiota transplantation (FMT) to transplant material from young (5-week-old) into aged (42-week-old) mice, we find that the composition of gut microbiota in FMT-treated mice presents a "younger-like phenotype" and an increase of commensal bacteria, such as Bifidobacterium and Ruminococcaceae. Moreover, the FMT-treated mice show increased anti-inflammatory cytokine IL-4 and decreased pro-inflammatory cytokine IFN-γ. Fertility tests for assessing ovarian function reveal that the first litter size of female FMT-treated mice is significantly higher than that of the non-FMT group. Morphology analysis demonstrates a dramatic decrease in follicle atresia and apoptosis as well as an increase in cellular proliferation in the ovaries of the FMT-treated mice. Our results also show that FMT improves the immune microenvironment in aged ovaries, with decreased macrophages and macrophage-derived multinucleated giant cells (MNGCs). These results suggest that FMT from young donors could be a good choice for delaying ovarian aging.

摘要

高龄产妇的特点是卵巢中卵子数量和质量下降,衰老过程伴随着肠道微生物群落组成的变化。然而,肠道微生物群与卵巢衰老之间的关系知之甚少。通过使用粪便微生物群移植(FMT)将来自年轻(5 周龄)的物质移植到年老(42 周龄)的小鼠中,我们发现 FMT 处理的小鼠的肠道微生物群组成呈现出“更年轻的表型”,共生菌如双歧杆菌和瘤胃球菌科的数量增加。此外,FMT 处理的小鼠表现出抗炎细胞因子 IL-4 的增加和促炎细胞因子 IFN-γ 的减少。用于评估卵巢功能的生育测试表明,雌性 FMT 处理的小鼠的第一胎产仔数明显高于非 FMT 组。形态分析表明,FMT 处理的小鼠的卵泡闭锁和凋亡急剧减少,细胞增殖增加。我们的研究结果还表明,FMT 改善了老年卵巢的免疫微环境,减少了巨噬细胞和巨噬细胞衍生的多核巨细胞(MNGCs)。这些结果表明,来自年轻供体的 FMT 可能是延缓卵巢衰老的一个很好的选择。

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