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Biological Evaluation of Chitosan-Based In Situ-Forming Hydrogel with Low Phase Transition Temperature

机译:低相变温度下壳聚糖基原位形成水凝胶的生物评价

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The aims of current study were to choose a method for preparing sterile chitosan-alpha,beta-glycerophosphate (CS-alpha,beta-GP) in situ-forming hydrogel which had potential applications in tissue engineering and evaluated its biocompatibility and degradation characteristics. The results of sterilization stability tests indicated that sterile formulations could be obtained by ultraviolet irradiation of CS powders, 0.22 mm filtration of alpha,beta-GP and lactic acid solutions, and sterile preparation of CS-alpha,beta-GP formulations. The obtained sterile CS-alpha,beta-GP formulations showed low hemolysis rates and low BSA adsorption at physiological conditions. When injected in vivo the CS-alpha,beta-GP sol turned into gel implant in situ and could be degraded gradually. A minimal inflammatory reaction which could not be found by macroscopic evaluation was induced after injection and new capillary formation was found around the hydrogel humps, making the CS-alpha,beta-GP hydrogel worthwhile to be considered for tissue engineering and biomedical applications. (C) 2014 Wiley Periodicals, Inc.
机译:本研究的目的是选择一种原位形成无菌壳聚糖-α,β-甘油磷酸(CS-α,β-GP)水凝胶的制备方法,该方法在组织工程中具有潜在的应用前景,并评价了其生物相容性和降解特性。灭菌稳定性测试结果表明,可以通过CS粉末的紫外线照射,0.22 mm的α,β-GP和乳酸溶液的过滤以及CS-α,β-GP制剂的无菌制备来获得无菌制剂。所获得的无菌CS-α,β-GP制剂在生理条件下显示出低溶血率和低BSA吸附。当体内注射时,CS-α,β-GP溶胶会原位变成凝胶植入物,并可能逐渐降解。注射后诱发了无法通过宏观评估发现的最小炎症反应,并且在水凝胶隆起附近发现了新的毛细管形成,这使得CS-α,β-GP水凝胶值得用于组织工程和生物医学应用。 (C)2014威利期刊公司

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