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Controlled degradation of peptide modified hydrogels improves rate, quality, and quantity of in vivo bone formation

机译:肽修饰水凝胶的受控降解可提高体内骨骼形成的速率,质量和数量

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Biodegradability is a critical polymer scaffold characteristic for tissue engineering applications. A scaffold for cell transplantation should provide mechanical support and structure in concert with the needs of newly developing tissue. Alginate hydrogels modified with specific adhesion ligands have previously been used to successfully engineer bone and cartilage tissue in vivo, but show negligible degradation in vitro and in viva. Gamma irradiating the alginate, which decreased the average molecular weight of the polymer chains, increased the rate of hydrogel degradation in viva and fibrous tissue ingrowth. Primary rat calvarial osteoblasts combined with gamma irradiated alginate modified with specific adhesion ligands significantly improved the rate, quality, and quantity of new bone tissue formed in vivo compared to the non-irradiated control condition. Control of both the degradation and adhesion characteristics of a polymer scaffold will be a powerful tool in regulating tissue regeneration processes.
机译:可生物降解性是组织工程应用中至关重要的聚合物支架特征。用于细胞移植的支架应提供机械支撑和结构,以适应新近发展的组织的需求。用特定的粘附配体修饰的藻酸盐水凝胶先前已被用于成功地在体内工程化骨和软骨组织,但是在体外和体内显示出可忽略不计的降解。伽马射线照射藻酸盐会降低聚合物链的平均分子量,从而增加体内和纤维组织向内生长的水凝胶降解速率。与未经辐照的对照条件相比,原发大鼠颅盖成骨细胞与经特定粘附配体修饰的γ辐照的藻酸盐相结合可显着提高体内形成的新骨组织的速率,质量和数量。聚合物支架的降解和粘附特性的控制将是调节组织再生过程的有力工具。

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