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GelatinMicrogel Incorporated Poly(ethylene glycol)-Based Bioadhesive withEnhanced Adhesive Property and Bioactivity

机译:明胶Microgel Incorporated的基于聚乙二醇的生物粘合剂增强的粘合性能和生物活性

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摘要

Up to 7.5 wt % of chemically cross-linked gelatin microgel was incorporated into dopamine-modified poly(ethylene glycol) (PEGDM) adhesive to simultaneously improve the material property and bioactivity of the PEG-based bioadhesive. Incorporation of gelatin microgel reduced cure time while it increased the elastic modulus and cross-linking density of the adhesive network. Most notably, the loss modulus values for microgel-containing adhesive were an order of magnitude higher when compared to microgel-free control. This drastic increase in the viscous dissipation ability of the adhesive is attributed to the introduction of reversible physical bonds into the adhesive network with the incorporation of the gelatin microgel. Additionally, incorporation of the microgel increased the adhesive properties of PEGDM by 1.5- to 2-fold. From in vitro cell culture studies, the composite adhesive is noncytotoxic and the incorporation of microgels provided binding site for promoting fibroblast attachment and viability. The subcutaneous implantation study indicated that the microgel-containing PEGDM adhesive is biocompatible and the incorporatedmicrogels provided pockets for rapid cellular infiltration. Gelatinmicrogel incorporation was demonstrated to be a facile method to simultaneouslyenhance the adhesive property and the bioactivity of PEG-based adhesive.
机译:将高达7.5 wt%的化学交联明胶微凝胶掺入多巴胺改性的聚(乙二醇)(PEGDM)粘合剂中,以同时提高PEG基生物粘合剂的材料性能和生物活性。明胶微凝胶的加入减少了固化时间,同时增加了胶粘剂网络的弹性模量和交联密度。最值得注意的是,与不含微凝胶的对照相比,含微凝胶的粘合剂的损耗模量值高一个数量级。粘合剂的粘性耗散能力的急剧增加归因于通过掺入明胶微凝胶将可逆的物理键引入到粘合剂网络中。另外,掺入微凝胶使PEGDM的粘合性能提高了1.5至2倍。从体外细胞培养研究来看,复合胶粘剂无细胞毒性,微凝胶的掺入提供了促进成纤维细胞附着和生存力的结合位点。皮下植入研究表明,含微凝胶的PEGDM粘合剂具有生物相容性,并且掺入了微凝胶提供了快速细胞渗透的口袋。明胶证明微凝胶掺入是同时简便的方法增强了PEG基粘合剂的粘合性能和生物活性。

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