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Quercetin delays postovulatory aging of mouse oocytes by regulating SIRT expression and MPF activity.
Oncotarget. 2017 Jun 13;8(24):38631-38641. doi: 10.18632/oncotarget.16219
Wang H, Jo YJ, Oh JS, Kim NH
Abstract:
If no fertilization occurs at an appropriate time after ovulation, oocyte quality deteriorates rapidly as a process called postovulatory aging. Because the postovulatory aging of oocytes has detrimental effects on embryo development and offspring, many efforts have been made to prevent oocyte aging. Here we showed that quercetin prevented the decline in oocyte quality during postovulatory aging of oocytes. Quercetin treatment reduced aging-induced morphological changes and reactive oxygen species accumulation. Moreover, quercetin attenuated the aging-associated abnormalities in spindle organization and mitochondrial distribution, preventing decrease of SIRT expression and histone methylation. Quercetin also ameliorated the decrease in maturation-promoting factor activity and the onset of apoptosis during postovulatory aging. Furthermore, quercetin treatment during postovulatory aging improves early embryo development. Our results demonstrate that quercetin relieves deterioration in oocyte quality and improves subsequent embryo development.
PMID: 28418847
Free Full-Text: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5503559/
Tags: cellular senescence, mice, ovary, quercetin, reproductive aging