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首页> 外文期刊>Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation >Injectable biodegradable polyethylene glycol/ RGD peptide hybrid hydrogels for in vitro chondrogenesis of human mesenchymal stern cells~a
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Injectable biodegradable polyethylene glycol/ RGD peptide hybrid hydrogels for in vitro chondrogenesis of human mesenchymal stern cells~a

机译:注射用可生物降解的聚乙二醇/ RGD肽杂合水凝胶用于人间充质干细胞的体外软骨形成

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(Figure Presented) In this study, an injectable and biodegradable poly(ethylene glycol) (PEG)/arginine-glycine-aspartic (RGD) peptide hybrid hydrogel has been synthesized and used as a biomimetic scaffold for encapsulation of human mesenchymal stem cells (hMSCs). Tetrahydroxyl PEG was functionalized with acrylate, and then reacted with thiol-containing peptide (RGD). Gelation occurred within 30 min with the addition of cells and PEG-dithiol via Michael addition. The hydrogels synthesized with a peptide concentration of 1.0-5.0 mM achieved significantly greater cell viability when compared to the hydrogels without the RGD peptide. However, the effect of RGD on chondrogenesis was found to be dose-dependent. Immunohistology studies demonstrated that hMSCs encapsulated in the hydrogel matrix with 1.0 mM RGD and TGF-?3 showed enhanced positive staining for aggrecan and type II collagen as compared to that with 5.0 mM RGD and unmodified PEG hydrogels. RT-PCR results further revealed that the cells in hydrogels with 1 mM RGD expressed significantly higher levels of type II collagen than those in PEG hydogels without RGD peptide. These findings have demonstrated that the PEG-RGD hydrogels can be a promising scaffold to deliver hMSCs for cartilage repair.
机译:(显示的图)在这项研究中,已合成了可注射且可生物降解的聚(乙二醇)/精氨酸-甘氨酸-天冬氨酸(RGD)肽杂合水凝胶,并用作仿生支架来封装人间充质干细胞(hMSCs) )。将四羟基PEG用丙烯酸酯官能化,然后与含硫醇的肽(RGD)反应。在30分钟内发生凝胶化,同时加入细胞,并通过Michael加成加入PEG-二硫醇。与没有RGD肽的水凝胶相比,以1.0-5.0 mM的肽浓度合成的水凝胶具有明显更高的细胞活力。然而,发现RGD对软骨形成的作用是剂量依赖性的。免疫组织学研究表明,与5.0 mM RGD和未修饰的PEG水凝胶相比,用1.0 mM RGD和TGF-β3包裹在水凝胶基质中的hMSCs对聚集蛋白聚糖和II型胶原蛋白的阳性染色增强。 RT-PCR结果进一步表明,具有1 mM RGD的水凝胶中的细胞表达的II型胶原蛋白水平明显高于不含RGD肽的PEG扁桃体中的细胞。这些发现表明,PEG-RGD水凝胶可以作为有希望的支架来递送hMSC进行软骨修复。

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