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首页> 外文期刊>Acta biomaterialia >Platelet rich plasma hydrogels promote in vitro and in vivo angiogenic potential of adipose-derived stem cells
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Platelet rich plasma hydrogels promote in vitro and in vivo angiogenic potential of adipose-derived stem cells

机译:血小板富血浆水凝胶在体外促进脂肪衍生干细胞的体外血管生成潜力

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Despite great advances in skin wound care utilizing grafting techniques, the resulting severe scarring, deformity and ineffective vascularization remains a challenge. Alternatively, tissue engineering of new skin using patient-derived stem cells and scaffolding materials promises to greatly increase the functional and aesthetic outcome of skin wound healing. This work focused on the optimization of a polyethylene glycol modified (PEGylated) platelet-rich plasma (PRP) hydrogel for the protracted release of cytokines, growth factors, and signaling molecules and also the delivery of a provisional physical framework for stem cell angiogenesis. Freshly collected whole blood was utilized to synthesize PEGylated PRP hydrogels containing platelet concentrations ranging from 0 to 200,000 platelets/mu l. Hydrogels were characterized using thromboelastography and impedance aggregometry for platelet function and were visualized using scanning electron microscopy. To assess the effects of PEGylated PRP hydrogels on cells, PRP solutions were seeded with human adipose-derived stem cells (ASCs) prior to gelation. Following 14 days of incubation in vitro, increased platelet concentrations resulted in higher ASC proliferation and vascular gene and protein expression (assessed via RT-PCR, ELISA, and immunochemistry). Using a rat skin excision model, wounds treated with PRP + ASC hydrogels increased the number of vessels in the wound by day 8 (80.2 vs. 62.6 vessels/mm(2)) compared to controls. In conclusion, the proposed PEGylated PRP hydrogel promoted both in vitro and transient in vivo angiogenesis of ASCs for improved wound healing.
机译:尽管利用嫁接技术具有良好的皮肤伤口护理,但由此产生的严重瘢痕,畸形和无效血管化仍然是一个挑战。或者,使用患者衍生的干细胞和脚手架材料的新皮肤组织工程有望大大增加皮肤伤口愈合的功能和美学结果。这项工作的重点是优化用于散延释放细胞因子,生长因子和信号传导分子的聚乙二醇改性(PEG化)富含血小板(PRP)水凝胶,以及递送干细胞血管生成的临时物理框架。新鲜收集的全血可用于合成含有0至200,000个血小板/μl的血小板浓度的聚焦化PRP水凝胶。用血小板函数的血栓塑料和阻抗聚合物表征水凝胶,使用扫描电子显微镜观察。为了评估聚乙二醇化PRP水凝胶对细胞的影响,在凝胶化之前用人脂肪衍生的干细胞(ASCS)接种PRP溶液。在体外孵育14天后,增加的血小板浓度增加,导致较高的ASC增殖和血管基因和蛋白质表达(通过RT-PCR,ELISA和免疫化评估)。使用PRP + ASC水凝胶处理的伤口增加了与对照的第8天(80.2与62.6血管/ mm(2))增加了伤口的血管数量。总之,所提出的PEG化PRP水凝胶在体外促进ASC的体内血管生成,用于改善伤口愈合。

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