生物
卵巢
卵泡期
免疫衰老
卵泡
卵巢储备
免疫系统
纤维化
间质细胞
转录组
男科
内分泌学
内科学
免疫学
医学
癌症研究
不育
怀孕
遗传学
基因表达
基因
作者
José V. V. Isola,Sarah R. Ocañas,Chase R. Hubbart,Sung-Hwan Ko,Samim Ali Mondal,Jéssica D. Hense,Hannah N. C. Carter,Augusto Schneider,Susan Kovats,José Alberola‐Ila,Willard M. Freeman,Michael B. Stout
出处
期刊:Nature Aging
日期:2024-01-10
卷期号:4 (1): 145-162
被引量:53
标识
DOI:10.1038/s43587-023-00552-5
摘要
Abstract Ovarian aging leads to diminished fertility, dysregulated endocrine signaling and increased chronic disease burden. These effects begin to emerge long before follicular exhaustion. Female humans experience a sharp decline in fertility around 35 years of age, which corresponds to declines in oocyte quality. Despite a growing body of work, the field lacks a comprehensive cellular map of the transcriptomic changes in the aging mouse ovary to identify early drivers of ovarian decline. To fill this gap we performed single-cell RNA sequencing on ovarian tissue from young (3-month-old) and reproductively aged (9-month-old) mice. Our analysis revealed a doubling of immune cells in the aged ovary, with lymphocyte proportions increasing the most, which was confirmed by flow cytometry. We also found an age-related downregulation of collagenase pathways in stromal fibroblasts, which corresponds to rises in ovarian fibrosis. Follicular cells displayed stress-response, immunogenic and fibrotic signaling pathway inductions with aging. This report provides critical insights into mechanisms responsible for ovarian aging phenotypes. The data can be explored interactively via a Shiny-based web application.
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