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Injectable Hyaluronic Acid-co-Gelatin Cryogels for Tissue-Engineering Applications

机译:用于组织工程应用的可注射的透明质酸-明胶冰晶

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摘要

Polymeric scaffolds such as hydrogels can be engineered to restore, maintain, or improve impaired tissues and organs. However, most hydrogels require surgical implantation that can cause several complications such as infection and damage to adjacent tissues. Therefore, developing minimally invasive strategies is of critical importance for these purposes. Herein, we developed several injectable cryogels made out of hyaluronic acid and gelatin for tissue-engineering applications. The physicochemical properties of hyaluronic acid combined with the intrinsic cell-adhesion properties of gelatin can provide suitable physical support for the attachment, survival, and spreading of cells. The physical characteristics of pure gelatin cryogels, such as mechanics and injectability, were enhanced once copolymerized with hyaluronic acid. Reciprocally, the adhesion of 3T3 cells cultured in hyaluronic acid cryogels was enhanced when formulated with gelatin. Furthermore, cryogels had a minimal effect on bone marrow dendritic cell activation, suggesting their cytocompatibility. Finally, in vitro studies revealed that copolymerizing gelatin with hyaluronic acid did not significantly alter their respective intrinsic biological properties. These findings suggest that hyaluronic acid-co-gelatin cryogels combined the favorable inherent properties of each biopolymer, providing a mechanically robust, cell-responsive, macroporous, and injectable platform for tissue-engineering applications.
机译:诸如水凝胶之类的聚合物支架可以被工程化以恢复,维持或改善受损的组织和器官。然而,大多数水凝胶需要手术植入,这可能引起多种并发症,例如感染和对邻近组织的损害。因此,开发微创策略对于这些目的至关重要。在这里,我们开发了几种由透明质酸和明胶制成的可注射冷冻凝胶,用于组织工程应用。透明质酸的物理化学特性与明胶固有的细胞粘附特性相结合可为细胞的附着,存活和扩散提供合适的物理支持。一旦与透明质酸共聚,纯明胶冷冻凝胶的物理特性(例如力学性能和可注射性)将得到增强。相反,当用明胶配制时,在透明质酸冰冻凝胶中培养的3T3细胞的粘附性增强。此外,冷冻凝胶对骨髓树突状细胞的活化作用很小,表明它们具有细胞相容性。最后,体外研究表明,将明胶与透明质酸共聚不会明显改变它们各自的固有生物学特性。这些发现表明,透明质酸-共明胶冷冻凝胶结合了每种生物聚合物的良好固有特性,为组织工程应用提供了机械坚固,细胞响应,大孔且可注射的平台。

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