Epigallocatechin‐3‐gallate improves the quality of maternally aged oocytes

Author:

Zhang HongHui12345ORCID,Su Wei13456,Zhao RuSong12345,Li Mei13456,Zhao ShiGang13456,Chen Zi‐Jiang13456,Zhao Han13456

Affiliation:

1. State Key Laboratory of Reproductive Medicine and Offspring Health Shandong University Jinan China

2. The Affiliated Suzhou Hospital of Nanjing Medical University, Suzhou Municipal Hospital, Gusu School Nanjing Medical University Nanjing China

3. Key Laboratory of Reproductive Endocrinology of Ministry of Education Shandong University Jinan China

4. National Research Center for Assisted Reproductive Technology and Reproductive Genetic Shandong University Jinan China

5. Research Unit of Gametogenesis and Health of ART‐Offspring, Chinese Academy of Medical Sciences (No.2021RU001) Jinan China

6. Shandong Key Laboratory of Reproductive Medicine, Shandong Provincial Hospital Affiliated to Shandong First Medical University Jinan China

Abstract

AbstractThe decline in female fertility as age advances is intricately linked to the diminished developmental potential of oocytes. Despite this challenge, the strategies available to enhance the quality of aged oocytes remain limited. Epigallocatechin‐3‐gallate (EGCG), characterised by its anti‐inflammatory, antioxidant and tissue protective properties, holds promise as a candidate for improving the quality of maternally aged oocytes. In this study, we explored the precise impact and underlying mechanisms of EGCG on aged oocytes. EGCG exhibited the capacity to enhance the quality of aged oocytes both in vitro and in vivo. Specifically, the application of EGCG in vitro resulted in noteworthy improvements, including an increased rate of first polar body extrusion, enhanced mitochondrial function, refined spindle morphology and a reduction in oxidative stress. These beneficial effects were further validated by the improved fertility observed among aged mice. In addition, our findings propose that EGCG might augment the expression of Arf6. This augmentation, in turn, contributes to the assembly of spindle‐associated F‐actin, which can contribute to mitigate the aneuploidy induced by the disruption of spindle F‐actin within aged oocytes. This work thus contributes not only to understanding the role of EGCG in bolstering oocyte health, but also underscores its potential as a therapeutic intervention to address fertility challenges associated with advanced age.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Cell Biology,General Medicine

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