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Resveratrol Plays a Protective Role against Premature Ovarian Failure and Prompts Female Germline Stem Cell Survival

机译:白藜芦醇对卵巢早衰起保护作用并提示女性生殖细胞干细胞存活

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摘要

This study was designed to investigate the protective effect of resveratrol (RES) on premature ovarian failure (POF) and the proliferation of female germline stem cells (FGSCs) at the tissue and cell levels. POF mice were lavaged with RES, and POF ovaries were co-cultured with RES and/or GANT61 in vitro. FGSCs were pretreated with Busulfan and RES and/or GANT61 and co-cultured with M1 macrophages, which were pretreated with RES. The weights of mice and their ovaries, as well as their follicle number, were measured. Ovarian function, antioxidative stress, inflammation, and FGSCs survival were evaluated. RES significantly increased the weights of POF mice and their ovaries as well as the number of follicles, while it decreased the atresia rate of follicles. Higher levels of Mvh, Oct4, SOD2, GPx, and CAT were detected after treatment with RES in vivo and in vitro. RES treatment resulted in significantly lower TNF-α and IL-6 concentrations and an obviously higher IL-10 concentration in the ovaries. In FGSCs, higher Mvh, Oct4, and SOD2 concentrations and lower TNF-α, IL-6, and MDA concentrations were measured in the RES group. Blockage of the Hh signaling pathway reversed the protective effect of RES on FGSCs. In conclusion, RES effectively improved the ovarian function of the POF model and the productive capacity of FGSCs via relieving oxidative stress and inflammation and a mechanism involving the Hh signaling pathway, suggesting that RES is a potential agent against POF and can aid in the survival of FGSCs.
机译:这项研究旨在研究白藜芦醇(RES)对卵巢早衰(POF)和雌性生殖系干细胞(FGSCs)在组织和细胞水平上的保护作用。用RES灌洗POF小鼠,然后在体外与RES和/或GANT61共培养POF卵巢。 FGSC用白消安和RES和/或GANT61预处理,并与RES预处理的M1巨噬细胞共培养。测量小鼠及其卵巢的重量以及卵泡数。评估卵巢功能,抗氧化应激,炎症和FGSC的存活率。 RES显着增加了POF小鼠及其卵巢的重量以及卵泡的数量,同时降低了卵泡的闭锁率。在体内和体外用RES治疗后,检测到较高水平的Mvh,Oct4,SOD2,GPx和CAT。 RES治疗导致卵巢中的TNF-α和IL-6浓度显着降低,而IL-10的浓度明显升高。在FGSC中,RES组的Mvh,Oct4和SOD2浓度较高,而TNF-α,IL-6和MDA浓度较低。 Hh信号通路的封锁逆转了RES对FGSC的保护作用。总之,RES通过缓解氧化应激和炎症反应以及Hh信号通路的机制,有效改善了POF模型的卵巢功能和FGSC的生产能力,这表明RES是抗POF的潜在药物,可以帮助POF的生存。 FGSC。

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