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首页> 外文期刊>Biomaterials >Disulfide-crosslinked hyaluronan-gelatin hydrogel films: a covalent mimic of the extracellular matrix for in vitro cell growth.
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Disulfide-crosslinked hyaluronan-gelatin hydrogel films: a covalent mimic of the extracellular matrix for in vitro cell growth.

机译:二硫键交联的透明质酸-明胶水凝胶膜:用于体外细胞生长的细胞外基质的共价模拟物。

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A new disulfide crosslinking method was developed for the preparation of blended hyaluronan (HA)-gelatin hydrogels to form a synthetic, covalently linked mimic of the extracellular matrix (ECM). The HA and gelatin were chemically modified using 3,3'-dithiobis(propionic hydrazide) (DTP). After reduction with dithiothreitol (DTT), the thiol derivatives of HA (HA-DTPH) and gelatin (gelatin-DTPH) were obtained and characterized. To minimize interference with biological function, the degree of substitution of HA-DTPH and gelatin-DTPH was kept below 50%. Solutions of HA-DTPH and gelatin-DTPH in varying blends (20%, 40%, 60%, 80% gelatin) were prepared in 1% w/v NaCl and crosslinked by disulfide bond formation in air. Hydrogel films were dried and further crosslinked with dilute hydrogen peroxide. Disulfide crosslinked HA-DTPH, gelatin-DTPH, and blends thereof, were degradable enzymatically by collagenase and by hyaluronidase (HAse). The rapid digestion of the crosslinked 100% gelatin-DTPH film by collagenasewas significantly retarded by the presence of 20% or 40% HA-DTPH. Addition of at least 40% w/v gelatin into the 100% HA-DTPH films significantly improved the attachment and spreading of Balb/c 3T3 murine fibroblasts seeded on the surface of the hydrogel. These results demonstrate that disulfide-crosslinked HA-gelatin hydrogels, a new type of covalent synthetic ECM, constitute biocompatible and biodegradable substrata for cell culture in vitro.
机译:开发了一种新的二硫键交联方法,用于制备混合的透明质酸(HA)-明胶水凝胶,以形成细胞外基质(ECM)的合成,共价连接的模拟物。使用3,3'-二硫代双(丙酰肼)(DTP)对HA和明胶进行化学修饰。用二硫苏糖醇(DTT)还原后,得到HA的硫醇衍生物(HA-DTPH)和明胶(明胶-DTPH)并进行了表征。为了使对生物学功能的干扰最小化,HA-DTPH和明胶-DTPH的取代度应保持在50%以下。在1%w / v NaCl中制备HA-DTPH和明胶-DTPH在各种混合物(20%,40%,60%,80%明胶)中的溶液,并通过在空气中形成二硫键进行交联。将水凝胶膜干燥并进一步用稀的过氧化氢交联。二硫键交联的HA-DTPH,明胶-DTPH及其混合物可通过胶原酶和透明质酸酶(HAse)酶促降解。胶原酶对交联的100%明胶-DTPH膜的快速消化被20%或40%HA-DTPH的存在显着延迟。向100%HA-DTPH膜中添加至少40%w / v明胶可显着改善接种在水凝胶表面的Balb / c 3T3鼠成纤维细胞的附着和扩散。这些结果表明,二硫化物交联的HA-明胶水凝胶是一种新型的共价合成ECM,构成了体外细胞培养的生物相容性和可生物降解基质。

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