Departamento de Embriología y Genética, Facultad de Medicina, Universidad Nacional Autónoma de México, Mexico City 04510, Mexico.
Departamento de Biología Celular y Fisiología, Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, Mexico City 04510, Mexico.
Int J Mol Sci. 2024 Sep 13;25(18):9906. doi: 10.3390/ijms25189906.
The aging ovary in mammals leads to the reduced production of sex hormones and a deterioration in follicle quality. The interstitial gland originates from the hypertrophy of the theca cells of atretic follicles and represents an accumulative structure of the ovary that may contribute to its aging. Here, reproductive and mature rabbit ovaries are used to determine whether the interstitial gland plays a crucial role in ovarian aging. We demonstrate that, in the mature ovary, interstitial gland cells accumulate lipid droplets and show ultrastructural characteristics of lipophagy. Furthermore, they undergo modifications and present a foamy appearance, do not express the pan-leukocyte CD-45 marker, and express CYP11A1. These cells are the first to present an increase in lipofuscin accumulation. In foamy cells, the expression of p21 remains low, PCNA expression is maintained at mature ages, and their nuclei do not show positivity for H2AX. The interstitial gland shows a significant increase in lipofuscin accumulation compared with the ovaries of younger rabbits, but lipofuscin accumulation remains constant at mature ages. Surprisingly, no accumulation of cells with DNA damage is evident, and an increase in proliferative cells is observed at the age of 36 months. We suggest that the interstitial gland initially uses lipophagy to maintain steroidogenic homeostasis and prevent cellular senescence.
哺乳动物的衰老卵巢导致性激素产生减少和卵泡质量恶化。间质腺起源于闭锁卵泡的间质细胞的肥大,是卵巢的累积结构,可能有助于其衰老。在这里,使用生殖和成熟的兔卵巢来确定间质腺是否在卵巢衰老中起关键作用。我们表明,在成熟的卵巢中,间质腺细胞积累脂滴,并表现出脂噬的超微结构特征。此外,它们发生修饰并呈现泡沫外观,不表达泛白细胞 CD-45 标志物,而是表达 CYP11A1。这些细胞是最先出现脂褐素积累增加的细胞。在泡沫细胞中,p21 的表达保持较低水平,PCNA 表达在成熟年龄维持,并且它们的核不显示 H2AX 阳性。与年轻兔子的卵巢相比,间质腺的脂褐素积累显著增加,但在成熟年龄时脂褐素积累保持不变。令人惊讶的是,没有明显的细胞 DNA 损伤积累,并且在 36 个月时观察到增殖细胞增加。我们认为,间质腺最初利用脂噬来维持类固醇生成的内稳态并防止细胞衰老。