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首页> 外文期刊>Advanced Materials >Dynamic Hyaluronan Hydrogels with Temporally Modulated High Injectability and Stability Using a Biocompatible Catalyst
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Dynamic Hyaluronan Hydrogels with Temporally Modulated High Injectability and Stability Using a Biocompatible Catalyst

机译:动态透明质酸水凝胶与生物相容性催化剂的临时调节的高注射性和稳定性。

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摘要

Injectable and biocompatible hydrogels have become increasingly important for cell transplantation to provide mechanical protection of cells during injection and a stable scaffold for cell adhesion post-injection. Injectable hydrogels need to be easily pushed through a syringe needle and quickly recover to a gel state, thus generally requiring noncovalent or dynamic cross-linking. However, a dilemma exists in the design of dynamic hydrogels: hydrogels with fast exchange of cross-links are easier to eject using less force, but lack long-term stability; in contrast, slow exchange of cross-links improves stability, but compromises injectability and thus the ability to protect cells under flow. A new concept to resolve this dilemma using a biocompatible catalyst to modulate the dynamic properties of hydrogels at different time points of application to have both high injectability and high stability is presented. Hyaluronic acid based hydrogels are formed through dynamic covalent hydrazone cross-linking in the presence of a biocompatible benzimidazole-based catalyst. The catalyst accelerates the formation and exchange of hydrazone bonds, enhancing injectability, but rapidly diffuses away from the hydrogel after injection to retard the exchange and improve the long-term stability for cell culture.
机译:对于细胞移植而言,可注射且生物相容的水凝胶变得越来越重要,以在注射过程中为细胞提供机械保护,并为注射后的细胞粘附提供稳定的支架。需要将可注射的水凝胶容易地推入注射器针头并迅速恢复至凝胶状态,因此通常需要非共价或动态交联。然而,在动态水凝胶的设计中存在一个难题:具有快速交换交联键的水凝胶更容易以较小的力弹出,但缺乏长期稳定性;相反,交联的缓慢交换提高了稳定性,但损害了可注射性,从而损害了流动细胞的保护能力。提出了使用生物相容性催化剂调节水凝胶在不同应用时间点的动态特性以具有高注射能力和高稳定性的解决这一难题的新概念。在生物相容性苯并咪唑基催化剂存在下,通过动态共价交联形成透明质酸基水凝胶。该催化剂加速了bonds键的形成和交换,增强了可注射性,但在注射后迅速从水凝胶中扩散出去,从而阻碍了交换并提高了细胞培养的长期稳定性。

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