Analyzing the cellular and molecular atlas of ovarian mesenchymal cells provides a strategy against female reproductive aging

被引:0
作者
Longzhong Jia
Wenji Wang
Jing Liang
Shudong Niu
Yibo Wang
Jian Yang
Lingyu Li
Ge Wang
Xueqiang Xu
Lu Mu
Kaixin Cheng
Xuebing Yang
Yijing Wang
Haoshu Luo
Guoliang Xia
Yuwen Ke
Yan Zhang
Hua Zhang
机构
[1] China Agricultural University,State Key Laboratory of Animal Biotech Breeding, College of Biological Sciences
[2] Taizhou University,School of Life Sciences
[3] National Institute of Biological Sciences,Key Laboratory of Ministry of Education for Conservation and Utilization of Special Biological Resources in Western China, College of Life Science
[4] Ningxia University,undefined
来源
Science China Life Sciences | 2023年 / 66卷
关键词
single-cell analysis; ovary; mesenchyma; mesenchymal progenitor cells; aging; infertility;
D O I
暂无
中图分类号
学科分类号
摘要
Ovarian mesenchymal cells (oMCs) constitute a distinct microenvironment that supports folliculogenesis under physiological conditions. Supplementation of exogenous non-ovarian mesenchymal-related cells has been reported to be an efficient approach to improve ovarian functions. However, the development and cellular and molecular characteristics of endogenous oMCs remain largely unexplored. In this study, we surveyed the single-cell transcriptomic landscape to dissect the cellular and molecular changes associated with the aging of oMCs in mice. Our results showed that the oMCs were composed of five ovarian differentiated MC (odMC) populations and one ovarian mesenchymal progenitor (oMP) cell population. These cells could differentiate into various odMCs via an oMP-derived route to construct the ovarian stroma structures. Comparative analysis revealed that ovarian aging was associated with decreased quantity of oMP cells and reduced quality of odMCs. Based on the findings of bioinformatics analysis, we designed different strategies involving supplementation with young oMCs to examine their effects on female fertility and health. Our functional investigations revealed that oMCs supplementation prior to ovarian senescence was the optimal method to improve female fertility and extend the reproductive lifespan of aged females in the long-term.
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页码:2818 / 2836
页数:18
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