生物
转录组
卵泡膜
卵巢
下调和上调
细胞生物学
细胞
线粒体
基因表达谱
RNA序列
衰老
生物信息学
小RNA
基因
电池类型
细胞培养
蛋白质组
基因表达
基因表达调控
遗传学
男科
氧化应激
作者
Meiling Zhang,Fanghao Guo,Qing Zhang,Qianhui Hu,Di Sun,Yongjian Ma,Yan-quan Li,Guo Mengxi,Haixia Ding,Ying Guo,Baicai Yang,Songmao Li,Ning-xia Sun,Yuxuan Zheng,Wen Li
出处
期刊:Aging Cell
[Wiley]
日期:2025-11-17
卷期号:: e70288-e70288
摘要
ABSTRACT Ovarian aging is a complex process that compromises fertility and elevates the risk of reproductive disorders. To elucidate its spatiotemporal dynamics, we integrated single‐nucleus RNA sequencing and spatial transcriptomics to construct a comprehensive aging atlas of 12 human ovarian tissues spanning ages 12–54 (prepubertal, age 12, n = 1; young, ages 23–29, n = 4; middle‐aged, ages 32–34, n = 2; and older‐aged, ages 42–54, n = 5). Our analysis revealed aging‐related transcriptomic shifts, including impaired mitochondrial oxidative phosphorylation and reproductive structure development in aged human ovaries. We identified a novel endothelial cell (EDC) subtype, CLDN5 + blood EDCs, which exhibited unique functional specialization as semiprofessional antigen‐presenting cells. In contrast to other cell types that lost cell identity during aging, CLDN5 + blood EDCs displayed transcriptomic sensitivity to aging, characterized by enhanced antigen‐presenting capabilities, and heightened inflammatory activity. Spatial mapping further uncovered immunoglobulin‐expressing ( IGHG1 + / IGKC + ) cell accumulation in the ovarian periphery, correlating with advancing age. Critically, aging disrupted global cellular connectivity while amplifying the DLK1:NOTCH3 axis between theca cells and CLDN5 + blood EDCs, which may contribute to the dysregulation of ovarian functions. We also detected the upregulation of DLK1 in granulosa cells from patients with primary ovarian insufficiency. This study significantly enhances our comprehension of the underlying mechanisms of human ovarian aging and concurrently pinpoints potential therapeutic avenues for addressing related disorders.
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