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Platelet-rich plasma improves therapeutic effects of menstrual blood-derived stromal cells in rat model of intrauterine adhesion

机译:富血小板血浆改善月经血来源的基质细胞在宫腔粘连大鼠模型中的治疗作用

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Intrauterine adhesion (IUA) is a major cause of female secondary infertility. We previously demonstrated that menstrual blood-derived stromal cell (MenSC) transplantation helped severe IUA patients have pregnancy and endometrium regeneration. We also initiated platelet-rich plasma (PRP) acted as a beneficial supplement in MenSC culturing and a potential endometrial receptivity regulator. Here, we investigated the therapeutic effect of combined transplantation of MenSCs with PRP in rat IUA models and the mechanisms of MenSCs in endometrium regeneration. Rat IUA models were established by intrauterine mechanical injured. Nine days later, all rats were randomly assigned to four groups received different treatment: placebo, MenSC transplantation, PRP transplantation, and MenSCs + PRP transplantation. The traces of MenSCs were tracked with GFP label. Endometrial morphology and pathology, tissue proliferation, inflammation, pregnancy outcomes, and mechanism of MenSCs in the regeneration of endometrium were investigated. Notably, at days 9 and 18 post-treatment, MenSC transplantation significantly improved endometrial proliferation, angiogenesis, and morphology recovery and decreased collagen fibrosis and inflammation in the uterus. MenSCs had lesion chemotaxis, colonized around the endometrial glands. Gene expression of human-derived secretory protein IGF-1, SDF-1, and TSP-1 was detected in the uterus received MenSCs at day 18. The three treatments can all improve fertility in IUA rats. Moreover, gene expressions of cell proliferation, developmental processes, and other biological processes were induced in MenSC transplantation group. Hippo signaling pathway was the most significantly changed pathway, and the downstream factors CTGF, Wnt5a, and Gdf5 were significantly regulated in treatment groups. PRP enhanced these parameters through a synergistic effect. In summary, MenSCs could effectively improve uterine proliferation, markedly accelerate endometrial damage repairment and promote fertility restoration in IUA rats, suggesting a paracrine restorative effect and Hippo signaling pathway stimulation. Our results indicate MenSCs, a valuable source of cells for transplantation in the treatment intrauterine adhesion. Combined with PRP, this cell therapy was more effective.
机译:宫内粘连(IUA)是女性继发性不孕的主要原因。我们以前曾证明,经血来源的基质细胞(MenSC)移植有助于重症IUA患者妊娠和子宫内膜再生。我们还启动了富含血小板的血浆(PRP),作为MenSC培养中的有益补充剂和潜在的子宫内膜容受性调节剂。在这里,我们调查了MenSCs与PRP联合移植在大鼠IUA模型中的治疗效果以及MenSCs在子宫内膜再生中的机制。通过宫内机械损伤建立大鼠IUA模型。 9天后,将所有大鼠随机分为四组,分别接受安慰剂,MenSC移植,PRP移植和MenSCs + PRP移植。 MenSCs的痕迹用GFP标记跟踪。研究子宫内膜的形态和病理,组织增殖,炎症,妊娠结局以及MenSCs在子宫内膜再生中的机制。值得注意的是,在治疗后第9天和第18天,MenSC移植显着改善了子宫内膜增生,血管生成和形态恢复,并减少了子宫内的胶原纤维化和炎症。 MenSCs具有病变趋化性,定植在子宫内膜腺体周围。在第18天,在接受MenSCs的子宫中检测到了人源性分泌蛋白IGF-1,SDF-1和TSP-1的基因表达。这三种治疗方法均可改善IUA大鼠的生育能力。而且,在MenSC移植组中诱导了细胞增殖,发育过程和其他生物学过程的基因表达。河马信号通路是变化最明显的通路,下游因子CTGF,Wnt5a和Gdf5在治疗组中受到显着调节。 PRP通过协同作用增强了这些参数。总之,MenSCs可以有效改善子宫增生,显着加速IUA大鼠子宫内膜损伤的修复并促进生育能力的恢复,提示其旁分泌修复作用和Hippo信号通路的刺激。我们的结果表明,MenSCs是治疗子宫内粘连的重要细胞移植来源。结合PRP,这种细胞疗法更有效。

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