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Facile and green fabrication of biomimetic gelatin-siloxane hybrid hydrogel with highly elastic properties for biomedical applications

机译:生物医学应用中具有高弹性特性的仿生明胶-硅氧烷杂化水凝胶的简便,绿色制备

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摘要

Non-covalent hydrogel attracted a great deal of interest in drugs delivery and tissue regeneration areas because of its excellent characters such as mild preparation conditions and easily controlled structure and properties. Herein, we conducted a study on fabricating a biomimetic gelatin-siloxane (GT-S) hybrid hydrogel with tunable composition and properties by a facile and green method. The hybrid hydrogel was formed in biocompatible phosphate buffer solution (PBS) by a simple physical cross-linking mechanism. Hydrogels' composition, chemical structure, mechanical properties, biodegradation and cellular biocom-patibility were investigated in various conditions. The results showed that siloxane contents and curing temperatures had important effects on hybrid hydrogel structure and properties. GT-S hydrogel with optimized siloxane content and curing temperature exhibited high compressive elasticity (3.6 MPa at 86% strain, 85 wt% water) and excellent controlled biodegradation behavior with PBS and enzyme. Furthermore, GT-S hydrogel was shown to support marrow stem cell attachment and proliferation. This study conclusively demonstrates that our hybrid hydrogel has special properties including high elasticity and controlled biodegradation in various conditions. Therefore, it may act as a promising candidate in special biomedical applications such as implants for drugs delivery and scaffolds for tissue regeneration.
机译:非共价水凝胶由于其优异的特性(例如温和的制备条件以及易于控制的结构和性质)而在药物输送和组织再生领域引起了极大的兴趣。在本文中,我们进行了研究,通过一种简便而环保的方法来制备具有可调的组成和性能的仿生明胶-硅氧烷(GT-S)杂化水凝胶。杂化水凝胶是通过简单的物理交联机制在生物相容性磷酸盐缓冲溶液(PBS)中形成的。在各种条件下研究了水凝胶的组成,化学结构,力学性能,生物降解性和细胞生物相容性。结果表明,硅氧烷含量和固化温度对杂化水凝胶的结构和性能有重要影响。具有优化的硅氧烷含量和固化温度的GT-S水凝胶显示出高的压缩弹性(86%应变时为3.6 MPa,水为85 wt%),并具有良好的可控的PBS和酶生物降解性能。此外,已显示GT-S水凝胶可支持骨髓干细胞的附着和增殖。这项研究最终证明了我们的混合水凝胶具有特殊的特性,包括在各种条件下的高弹性和可控制的生物降解。因此,它可以在特殊的生物医学应用中用作有前途的候选药物,例如用于药物输送的植入物和用于组织再生的支架。

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