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Overexpression of miR-21 in stem cells improves ovarian structure and function in rats with chemotherapy-induced ovarian damage by targeting PDCD4 and PTEN to inhibit granulosa cell apoptosis

机译:miR-21在干细胞中的过表达通过靶向PDCD4和PTEN抑制颗粒细胞凋亡来改善化疗诱导的卵巢损伤大鼠的卵巢结构和功能

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Background Chemotherapy-induced premature ovarian failure (POF) is a severe complication affecting tumor patients at a childbearing age. Mesenchymal stem cells (MSCs) can partially restore the ovarian structure and function damaged by chemotherapy. miR-21 is a microRNA that can regulate cell apoptosis. This study discusses the repair effect and mechanism of MSCs overexpressing miR-21 on chemotherapy-induced POF. Methods Rat MSCs and granulosa cells (GCs) were isolated in vitro. MSCs were transfected with miR-21 lentiviral vector (LV-miR-21) to obtain MSCs stably expressing miR-21 (miR-21-MSCs). The microenvironment of an ovary receiving chemotherapy was mimicked by adding phosphamide mustard (PM) into the cellular culture medium. The apoptosis rate and the mRNA and protein expression of target genes PTEN and PDCD4 were detected in MSCs. Apoptosis was induced by adding PM into the culture medium for GCs, which were cocultured with miR-21-MSCs. The apoptosis rate and the mRNA and protein expression of PTEN and PDCD4 were detected. The chemotherapy-induced POF model was built into rats by intraperitoneal cyclophosphamide injection. miR-21-MSCs were transplanted into the bilateral ovary. The rats were sacrificed at 15, 30, 45, and 60?days after the last injection. The ovarian weights, follicle count, estrous cycle, and sex hormone levels (estradiol (E2) and follicle-stimulating hormone (FSH)) were detected. Apoptosis of GCs was determined by TUNEL assay. The miR-21 and mRNA and protein expression of PTEN and PDCD4 were determined. Results The apoptosis decreased in MSCs transfected with miR-21. The mRNA and protein expression of target genes PTEN and PDCD4 was downregulated. GCs cocultured with miR-21-MSCs showed a decreased apoptosis, an upregulation of miR-21, and a downregulation of PTEN and PDCD4. Following the injection of miR-21-MSCs, the ovarian weight and follicle counts increased; E2 levels increased while FSH levels decreased, with less severe apoptosis of GCs. The miR-21 expression in the ovaries was upregulated, while the mRNA expression and protein expression of PTEN and PDCD4 were downregulated. Conclusions Overexpression of miR-21 in MSCs promoted efficacy against chemotherapy-induced POF and its improvement of the repair effect was related to the inhibition of GC apoptosis by targeting PTEN and PDCD4.
机译:背景化学疗法诱发的卵巢早衰(POF)是一种严重的并发症,影响到育龄期的肿瘤患者。间充质干细胞(MSC)可以部分恢复卵巢结构和化疗所破坏的功能。 miR-21是一种微RNA,可以调节细胞凋亡。本研究探讨了过表达miR-21的MSCs对化疗诱导的POF的修复作用及其机制。方法体外分离大鼠骨髓间充质干细胞和颗粒细胞。用miR-21慢病毒载体(LV-miR-21)转染MSC,以获得稳定表达miR-21的MSC(miR-21-MSC)。通过向细胞培养基中添加磷酰胺芥末(PM)来模拟接受化疗的卵巢的微环境。检测MSCs中靶基因PTEN和PDCD4的凋亡率以及mRNA和蛋白表达。通过向PM培养基中加入PM诱导细胞凋亡,然后将其与miR-21-MSC共培养。检测PTEN和PDCD4的凋亡率以及mRNA和蛋白表达。通过腹腔内注射环磷酰胺将化学诱导的POF模型建立在大鼠体内。 miR-21-MSCs移植到双侧卵巢。在最后一次注射后第15、30、45和60天处死大鼠。检测卵巢重量,卵泡计数,发情周期和性激素水平(雌二醇(E2)和促卵泡激素(FSH))。通过TUNEL测定法确定GC的凋亡。测定了PTEN和PDCD4的miR-21以及mRNA和蛋白质表达。结果转染miR-21的MSCs凋亡减少。靶基因PTEN和PDCD4的mRNA和蛋白表达下调。与miR-21-MSCs共培养的GC显示出凋亡减少,miR-21上调以及PTEN和PDCD4的下调。注射miR-21-MSC后,卵巢重量和卵泡计数增加。 E 2 水平升高,而FSH水平降低,GC的严重凋亡较少。卵巢中的miR-21表达上调,而PTEN和PDCD4的mRNA表达和蛋白表达下调。结论MSCs中miR-21的高表达增强了化疗诱导的POF的疗效,其修复作用的改善与靶向PTEN和PDCD4抑制GC凋亡有关。

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