首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Combined growth factors enhanced angiogenic potential of cord blood-derived mononuclear cells transplanted to ischemic limbs.
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Combined growth factors enhanced angiogenic potential of cord blood-derived mononuclear cells transplanted to ischemic limbs.

机译:组合的生长因子增强了脐血来源的单核细胞移植到缺血肢体的血管生成潜力。

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摘要

Stem cell therapy has recently been limited by poor engraftment and the marginal influence of the administered cells. This study aimed to enhance the survival and angiogenic capacity of human umbilical cord blood (UCB)-derived mononuclear cells (MNCs) and to demonstrate their therapeutic effects on experimental ischemia. A specific culture medium containing five growth factors (Flt-3L, EGF, TPO, FGF and IGF-1) augmented cell proliferation, adhesion potential as well as stimulated MNCs to become progenitor-like cells. In addition, qRT-PCR demonstrated that MNCs cultured with these five growth factors (5f-MNCs) markedly up-regulated multiple angiogenic, arteriogenic and anti-apoptotic factors compared with uncultured MNCs. In an ischemic hindlimb model, the injection of 5f-MNCs prevented limb loss and augmented blood perfusion, capillary density, vascular maturation and angiogenic cytokines in the affected tissues. In addition, the 5f-MNCs exhibited an increased engraftment rate and an endothelial phenotype and stimulated angiogenic factors in ischemic hindlimbs as demonstrated by flow cytometric, immunohistochemical and qRT-PCR analyses. Taken together, these data suggest that 5f-MNCs could be used as a novel therapy for the treatment of ischemic cardiovascular disease due to their increased level of engraftment and angiogenic potential.
机译:最近,干细胞治疗受到植入不良和所施用细胞的边缘影响的限制。这项研究旨在提高人类脐带血(UCB)衍生的单核细胞(MNC)的存活率和血管生成能力,并证明其对实验性缺血的治疗作用。包含五个生长因子(Flt-3L,EGF,TPO,FGF和IGF-1)的特定培养基可增强细胞增殖,粘附潜能以及刺激的MNC成为祖细胞样细胞。此外,qRT-PCR表明,与未培养的MNC相比,用这五个生长因子(5f-MNC)培养的MNC显着上调了多种血管生成,动脉生成和抗凋亡因子。在局部缺血的后肢模型中,注射5f-MNC可防止肢体丢失,并在受影响的组织中增加血液灌注,毛细血管密度,血管成熟和血管生成细胞因子。另外,如通过流式细胞术,免疫组织化学和qRT-PCR分析所证实的,5f-MNC在缺血后肢中表现出更高的植入率和内皮表型并刺激了血管生成因子。综上所述,这些数据表明5f-MNC由于其增加的植入水平和血管生成潜力而可以用作治疗缺血性心血管疾病的新疗法。

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