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茶黄素 3,3'-二没食子酸酯通过改善卵母细胞质量和调节颗粒细胞功能来延缓卵巢衰老。

Theaflavin 3, 3'-Digallate Delays Ovarian Aging by Improving Oocyte Quality and Regulating Granulosa Cell Function.

机构信息

Center for Reproductive Medicine, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.

Henan Key Laboratory of Reproduction and Genetics, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.

出版信息

Oxid Med Cell Longev. 2021 Dec 8;2021:7064179. doi: 10.1155/2021/7064179. eCollection 2021.

Abstract

Ovarian aging refers to the gradual decline of ovarian function with increasing physiological age, manifested as decreased ovarian reserve, elevated aging-related markers, and reduced oocyte quality. With a declining female fertility and a growing aging population, it is urgent to delay ovarian aging to maintain fertility and improve the life quality of women. Theaflavin 3, 3'-digallate (TF3) is a naturally bioactive polyphenol compound extracted from black tea, and its antioxidant properties play an important role in maintaining human health and delaying aging; however, the effects of TF3 on female reproduction and ovarian function are not yet clear. Here, we show that TF3 can preserve primordial follicle pool, partially restore the estrous cycle, and increase the offspring number of aged mice. Meanwhile, TF3 gavage increased the number of oocytes retrieved, decreased the level of reactive oxygen species, increased the level of glutathione, and decreased the abnormal rate of oocyte spindle after ovulation induction. Moreover, TF3 inhibited human granulosa cell apoptosis and improved their antioxidative stress ability. High-throughput sequencing and small-molecule-targeted pharmacological prediction show that TF3 affects multiple pathways and gene expression levels, mainly involved in reproductive and developmental processes. It may also affect cellular function by targeting mTOR to regulate the autophagic pathway, thereby delaying the process of ovarian aging. This study shows that TF3 can be used as a potential dietary supplement to protect ovary function from aging and thereby improving the life quality of advanced-age women.

摘要

卵巢衰老指随着生理年龄的增长,卵巢功能逐渐下降的现象,表现为卵巢储备功能降低、衰老相关标志物升高和卵母细胞质量下降。随着女性生育力的下降和人口老龄化的加剧,延缓卵巢衰老以维持生育力和提高女性生活质量已迫在眉睫。茶黄素 3,3′-双没食子酸酯(TF3)是一种从红茶中提取的天然生物活性多酚化合物,其抗氧化特性在维持人体健康和延缓衰老方面发挥着重要作用;然而,TF3 对女性生殖和卵巢功能的影响尚不清楚。在这里,我们发现 TF3 可以保留原始卵泡池,部分恢复动情周期,并增加老年小鼠的后代数量。同时,TF3 灌胃增加了可回收卵母细胞的数量,降低了活性氧水平,增加了卵母细胞排卵诱导后纺锤体的谷胱甘肽水平,并降低了异常率。此外,TF3 抑制人卵巢颗粒细胞凋亡,提高其抗氧化应激能力。高通量测序和小分子靶向药理学预测表明,TF3 影响多个通路和基因表达水平,主要涉及生殖和发育过程。它还可能通过靶向 mTOR 调节自噬途径来影响细胞功能,从而延缓卵巢衰老过程。本研究表明,TF3 可作为一种潜在的膳食补充剂,保护卵巢功能免受衰老的影响,从而提高高龄女性的生活质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c63/8674650/7edbf22b3ab5/OMCL2021-7064179.001.jpg

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