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Effects of menstrual blood-derived stem cells on endometrial injury repair

机译:月经血干细胞对子宫内膜损伤修复的影响

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摘要

The present study aimed to investigate the effects of menstrual blood-derived stem cells (MenSCs) on endometrial injury repair. MenSCs were isolated from human menstrual blood and were cultured in vitro. Flow cytometric analysis of cells in the third generation demonstrated that MenSCs exhibited higher expression levels of cluster of differentiation (CD)90 and lower expression levels of CD146, which suggested that the MenSCs were cultured successfully. A mechanical damage model of unilateral (right) endometrium was established in BALB/c nude mice, which were divided into four groups, Normal, negative control (NC), Model and MenSC. MenSCs transfected with adenovirus-enhanced green fluorescent protein were transplanted into the right uterine cavity of mice in the MenSC and NC groups. The protein expression levels of keratin, vimentin, and vascular endothelial growth factor (VEGF) and the average endometrial thickness were measured by immunohistochemistry; the average optical density of vimentin, VEGF and keratin in the MenSC-treated group was significantly higher compared with the untreated Model group. Fertility tests were performed to determine the pregnancy rate of each group; following endometrial damage in BALB/c nude mice, endometrial thickness was decreased in the Model group, whereas model mice treated with MenSC exhibited increased endometrial thickness and increased the pregnancy rates. Therefore, MenSCs may promote the repair of endometrial lesions in mice by promoting the expression of vimentin, VEGF and keratin.
机译:本研究旨在调查月经血干细胞(MenSCs)对子宫内膜损伤修复的影响。从人类经血中分离出MenSCs,并在体外进行培养。第三代细胞的流式细胞术分析表明,MenSCs表现出较高的分化簇(CD)90表达水平,而CD146的表达水平较低,这表明MenSCs已成功培养。在BALB / c裸鼠中建立了单侧(右)子宫内膜的机械损伤模型,将其分为四组,正常,阴性对照(NC),模型和MenSC。用腺病毒增强的绿色荧光蛋白转染的MenSCs被移植到MenSC和NC组的小鼠右子宫腔中。用免疫组织化学法检测角蛋白,波形蛋白和血管内皮生长因子(VEGF)的蛋白表达水平以及平均子宫内膜厚度。 MenSC治疗组的波形蛋白,VEGF和角蛋白的平均光密度显着高于未治疗的模型组。进行生育力测试以确定每组的怀孕率。在BALB / c裸鼠子宫内膜损伤后,模型组子宫内膜厚度降低,而用MenSC处理的模型小鼠子宫内膜厚度增加,并且妊娠率增加。因此,MenSCs可能通过促进波形蛋白,VEGF和角蛋白的表达来促进小鼠子宫内膜病变的修复。

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