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首页> 外文期刊>Polymers for advanced technologies >Genipin-crosslinked gelatin hydrogel incorporated with PLLA-nanocylinders as a bone scaffold: Synthesis, characterization, and mechanical properties evaluation
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Genipin-crosslinked gelatin hydrogel incorporated with PLLA-nanocylinders as a bone scaffold: Synthesis, characterization, and mechanical properties evaluation

机译:Genipin-Crosslined Gelatin水凝胶与PLLA-纳米纤胺作为骨支架:合成,表征和机械性能评估

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摘要

Nowadays, despite remarkable progress in developing bone tissue engineering products, the fabrication of an ideal scaffold that could meet the main criteria, such as providing mechanical properties and suitable biostability as well as mimicking the bone extracellular matrix, still seems challenging. In this regard, utilizing combinatorial approaches seems more beneficial. Here, we aim to reinforce the mechanical characteristics of gelatin hydrogel via a combination of Genipin-based chemical cross-linking and incorporation of the poly l-lactic acid (PLLA) nanocylinders for application as bone scaffolds. Amine-functionalized nanocylinders are prepared via the aminolysis procedure and incorporated in gelatin hydrogel. The nanocylinder content (0, 1, 2, 3, and 4 wt%) and cross-linking density (0.1, 0.5, and 1 wt/vol%) are optimized to achieve suitable morphology, swelling ratio, degradation rate, and mechanical behaviors. The results indicate that hydrogel scaffold cross-linking by 0.5 wt% of Genipin shows optimized morphological feathers with a pore size of around 300 to 500 mu m as well as an average degradation rate (40.09% +/- 3.08%) during 32 days. Besides, the incorporation of 3 wt% PLLA nanocylinders into the cross-linked gelatin scaffold provides an optimized mechanical reinforcement as compressive modulus, and compressive strength show a 4- and 2.6-fold increase, respectively. 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assay indicates that the scaffold does not have any cytotoxicity effect. In conclusion, gelatin composite reinforced with 3 wt% PLLA nanocylinders cross-linked via 0.5 wt/vol% Genipin is suggested as a potential scaffold for bone tissue engineering applications.
机译:如今,尽管在开发骨组织工程产品方面具有显着进展,但是可以满足主要标准的理想支架的制造,例如提供机械性能和适当的生物稳定性以及模仿骨细胞外基质,似乎似乎具有挑战性。在这方面,利用组合方法似乎更有益。在这里,我们的目的是通过基于Genipin的化学交联和掺入聚L-乳酸(PLLA)纳米纤维蛋白的组合来加强明胶水凝胶的机械特性作为骨支架。胺官能化的纳米碳吲哚替纳通过氨基分解方法制备并在明胶水凝胶中掺入。优化纳米凝结含量(0,1,2,3和4wt%)和交联密度(0.1,0.5和1wt / Vol%),以实现合适的形态,溶胀比,降解率和机械行为。结果表明,水凝胶支架交联由0.5wt%的Genipin显示出优化的形态羽毛,其孔径约为300至500μm,并且在32天期间的平均降解速率(40.09%+/- 3.08%)。此外,将3wt%PLLA纳米碳蛋白掺入交联的明胶支架中,提供优化的机械增强件作为压缩模量,并且抗压强度分别显示4-2.6倍。 3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四唑溴铵测定表明支架没有任何细胞毒性效应。总之,用0.5wt /体积%Genipin交联3wt%PLLA纳米蛋白的明胶复合材料,提出作为骨组织工程应用的潜在支架。

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