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Effects of VEGF(+) Mesenchymal Stem Cells and Platelet-Rich Plasma on Inbred Rat Ovarian Functions in Cyclophosphamide-Induced Premature Ovarian Insufficiency Model

机译:VEGF(+)间充质干细胞和富含血小板血浆对环磷酰胺诱导的过早性卵巢功能亢进模型中近结蟹卵巢功能的影响

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Premature ovarian insufficiency (POI), a fertility disorder affecting women under 40years of age, is characterized by early loss of ovarian function. This study was aimed to maintain ovarian function in POI animal models by mesenchymal stem cells (MSCs) transplantation with/without the supplementation of platelet-rich plasma (PRP). Adipose tissue-derived MSCs were isolated from inbred rats (Fisher-344), and constitutive expression of both VEGF and GFP were maintained by transfection with plasmids, pVEGF and pGFP-N. PRP was derived from the blood of healthy untreated rats. A total of 60 rats were divided into 5 groups of 12 rats in each. First group was kept as untreated-control (Control), and POI model was induced in Fisher-344 rats by cyclophosphamide in the next four groups. Second group was kept as sham-operated-control (Sham). MSC, PRP and MSC+ PRP-treated groups were transplanted following the validation of POI model in rats. After 2months following the transplantation, anti-mullerian-hormone (AMH) and oestradiol (E-2) blood levels were measured. Follicles were evaluated after hematoxylin-eosin staining, and the immunofluorescence staining and gene expression analyses were performed to show the ovarian regeneration. The follicular count was improved after MSC- and MSC+PRP-treatment to 63% of Control-group and significantly higher than that in Sham-group, but a significant increase was not observed in PRP-group. Higher AMH and E-2 levels were measured in MSC+PRP than in Sham-group, and CXCL12, BMP-4, TGF-beta and IGF-1 expressions were also increased. This study showed MSCs +/-PRP transplantation after POI supports recovery of the follicular count and function. For ovarian recovery, a single administration of PRP was found not sufficient. Although MSC treatment increased follicular regeneration, better results were obtained in the co-transplantation of MSCs and PRP. These results might be promising for follicular regeneration in POI patients.
机译:早期卵巢不足(POI),影响40年龄低于年龄的女性的生育障碍,其特征是卵巢功能的早期丧失。本研究旨在通过间充质干细胞(MSCs)移植在富含血小板血浆(PRP)的补充的情况下将卵巢功能维持在POI动物模型中。从近交大鼠(Fisher-344)中分离脂肪组织衍生的MSC,并通过用质粒,PVEGF和PGFP-N转染来维持VEGF和GFP的组成型表达。 PRP来自健康未经处理的大鼠的血液。总共60只大鼠分为5组12只大鼠。第一组被视为未经处理的对照(对照),并且在接下来的四组中,通过环磷酰胺在Fisher-344大鼠中诱导POI模型。第二组被视为假手术控制(假)。在大鼠POI模型的验证后移植MSC,PRP和MSC + PRP处理基团。在移植后2个月后,测量抗mullerian-激素(AMH)和Ostrodiol(E-2)血液水平。在苏木精 - 曙红染色后评价卵泡,并进行免疫荧光染色和基因表达分析以显示卵巢再生。在MSC和MSC + PRP治疗后,将卵泡计数提高至63%的对照组,显着高于假组合,但在PRP组中未观察到显着增加。在MSC + PRP中测量较高的AMH和E-2水平,而不是假手段,并且还增加了CXCL12,BMP-4,TGF-β和IGF-1表达。该研究显示POI恢复滤泡计数和功能后MSCs +/- PRP移植。对于卵巢恢复,发现了单一施用PRP不充分。虽然MSC治疗增加了卵泡再生,但在MSC和PRP的共移植中获得了更好的结果。这些结果可能对POI患者的卵泡再生有前途。

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