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Preparation of Cross-linked sodium hyaluronate gels with different molecular weights of PEG and research for its viscoelasticity and Enzyme-resistant properties in vitro

机译:用不同分子量的PEG制备交联透明质酸钠凝胶及其在体外粘弹性和酶抗性特性研究

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Purpose To screen out the optimal conditions of cross-linking reaction of preparing for an injectable cross-linked sodium hyaluronate gel(CHA-gel) with higher resistance to hyaluronidase and research for its viscoelasticity and anti-enzyme degradation properties. Methods The CHA hydrogels were prepared with different molecular weights of PEG as cross-linking agent, such as PEG400, PEG1000, PEG6000, PEG10000, PEG20000. The optimal preparing conditions were determined by single factor test and orthogonal experiment. The Enzyme-resistant degradation properties in vitro of CHA-gels were analysed by carbazole and spectrophotometry. Its viscoelasticity was also compared with natural HA-gel by Stabinger method. Results the results of range analysis and variance analysis show that the pH of CHA solution and the ratio of cross-linking agent to HA were significant factors. The optimal preparing conditions of the parameters are 1.5% of HA, 0.001mol/L NaOH, at 37°C, reacting 4hr and 1:15 PEG20000/HA (g/g). Under these conditions, the CHA-gel has excellent Enzyme-resistant properties, R=85.1%, an high percentage of enzyme-resistant property. Its viscoelasticity can reach 61.3×10~4mPa·s, three times as much as natural HA-gel. Conclusion The CHA-gel with excellent physicochemical properties can be prepared under the optimal conditions, which can set foundation for developing better mechanical and Enzyme-resistant properties products of CHA-gel.
机译:为了筛选制备可注射交联透明质酸钠凝胶(CHA-GEL)的交联反应的最佳条件,其具有较高的透明质酸酶和粘弹性和抗酶降解性能的研究。方法用不同的分子量的PEG作为交联剂制备CHA水凝胶,例如PEG400,PEG1000,PEG6000,PEG10000,PEG20000。通过单因素测试和正交实验确定最佳制备条件。通过咔唑和分光光度法分析CHA-凝胶体外的酶抗性降解性质。还将其粘弹性与天然HA-GEL通过稳定法进行比较。结果范围分析和方差分析结果表明,CHA溶液的pH和交联剂与HA的比例是重要因素。参数的最佳制备条件为HA,0.001mol / L NaOH的1.5%,在37℃,反应4Hr和1:15 PEG20000 / HA(G / g)。在这些条件下,CHA-凝胶具有优异的酶抗性特性,r = 85.1%,抗性特性的高百分比。它的粘弹性可以达到61.3×10〜4mpa·s,三倍为天然HA-GEL。结论可在最佳条件下制备具有优异的物理化学性质的CHA-凝胶,可以为开发更好的机械和酶抗性特性产物的CHA-GEL来制备。

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