Balough Julia L, Dipali Shweta S, Velez Karen, Kumar T Rajendra, Duncan Francesca E
Center for Reproductive Longevity and Equality, Buck Institute for Research on Aging, Novato, CA, USA.
Department of Obstetrics and Gynecology, Feinberg School of Medicine, Northwestern University, Chicago, IL, USA.
Nat Aging. 2024 Dec;4(12):1711-1730. doi: 10.1038/s43587-024-00769-y. Epub 2024 Dec 13.
The female reproductive axis is one of the first organ systems to age, which has consequences for fertility and overall health. Here, we provide a comprehensive overview of the biological process of female reproductive aging across reproductive organs, tissues and cells based on research with widely used physiologic aging mouse models, and describe the mechanisms that underpin these phenotypes. Overall, aging is associated with dysregulation of the hypothalamic-pituitary-ovarian axis, perturbations of the ovarian stroma, reduced egg quantity and quality, and altered uterine morphology and function that contributes to reduced capacity for fertilization and impaired embryo development. Ultimately, these age-related phenotypes contribute to altered pregnancy outcomes and adverse consequences in offspring. Conserved mechanisms of aging, as well as those unique to the reproductive system, underlie these phenotypes. The knowledge of such mechanisms will lead to development of therapeutics to extend female reproductive longevity and support endocrine function and overall health.
女性生殖轴是最早衰老的器官系统之一,这对生育能力和整体健康都会产生影响。在此,我们基于对广泛使用的生理性衰老小鼠模型的研究,全面概述了女性生殖衰老在生殖器官、组织和细胞层面的生物学过程,并描述了构成这些表型的机制。总体而言,衰老与下丘脑 - 垂体 - 卵巢轴功能失调、卵巢基质紊乱、卵子数量和质量下降以及子宫形态和功能改变有关,这些变化导致受精能力降低和胚胎发育受损。最终,这些与年龄相关的表型会导致妊娠结局改变以及对后代产生不良后果。衰老的保守机制以及生殖系统特有的机制是这些表型的基础。了解这些机制将有助于开发治疗方法,以延长女性生殖寿命并维持内分泌功能和整体健康。