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酶交联的海藻酸-透明质酸复合水凝胶作为细胞输送载体。

Enzymatically cross-linked alginic-hyaluronic acid composite hydrogels as cell delivery vehicles.

机构信息

Amrita Centre for Nanosciences and Molecular Medicine, Amrita Vishwa Vidyapeetham, Kochi, Kerala 682041, India.

出版信息

Int J Biol Macromol. 2013 Apr;55:289-94. doi: 10.1016/j.ijbiomac.2012.12.045. Epub 2013 Jan 26.

Abstract

An injectable composite gel was developed from alginic and hyaluronic acid. The enzymatically cross-linked injectable gels were prepared via the oxidative coupling of tyramine modified sodium algiante and sodium hyaluronate in the presence of horse radish peroxidase (HRP) and hydrogen peroxide (H2O2). The composite gels were prepared by mixing equal parts of the two tyraminated polymer solutions in 10U HRP and treating with 1.0% H2O2. The properties of the alginate gels were significantly affected by the addition of hyaluronic acid. The percentage water absorption and storage modulus of the composite gels were found to be lower than the alginate gels. The alginate and composite gels showed lower protein release compared to hyaluronate gels in the absence of hyaluronidase. Even hyaluronate gels showed only approximately 10% protein release after 14 days incubation in phosphate buffer solution. ATDC-5 cells encapsulated in the injectable gels showed high cell viability. The composite gels showed the presence of enlarged spherical cells with significantly higher metabolic activity compared to cells in hyaluronic and alginic acid gels. The results suggest the potential of the composite approach to develop covalently cross-linked hydrogels with tuneable physical, mechanical, and biological properties.

摘要

一种可注射的复合凝胶是由海藻酸钠和透明质酸开发而成的。通过辣根过氧化物酶(HRP)和过氧化氢(H2O2)存在下,将经过 Tyr 修饰的海藻酸钠和透明质酸钠进行氧化偶联,制备了酶交联的可注射凝胶。将两种 Tyr 化聚合物溶液以 1:1 的比例混合,在 10U HRP 下处理,并加入 1.0% H2O2,制备复合凝胶。透明质酸的加入显著影响海藻酸钠凝胶的性能。与海藻酸钠凝胶相比,复合凝胶的吸水率和储能模量均较低。在没有透明质酸酶的情况下,与透明质酸凝胶相比,海藻酸盐和复合凝胶的蛋白质释放量较低。即使在磷酸盐缓冲溶液中孵育 14 天后,透明质酸凝胶的蛋白质释放量也仅约为 10%。包封在可注射凝胶中的 ATDC-5 细胞具有较高的细胞活力。与透明质酸和海藻酸凝胶中的细胞相比,复合凝胶中的细胞呈现出增大的球形,具有显著更高的代谢活性。这些结果表明,该复合方法具有开发具有可调物理、机械和生物学特性的共价交联水凝胶的潜力。

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