MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou, China.
Biotechnol J. 2011 Nov;6(11):1388-96. doi: 10.1002/biot.201100017. Epub 2011 Jul 22.
Composite hydrogels can be used as a scaffolding material for chondrogenesis, which requires a biomimetic environment to maintain chondrocyte morphology and phenotype. In this study, gelatin molecules were loaded into a hydrogel polymerized from a chitosan derivative (CML) to form a semi-interpenetrating polymer network. While the porous structure of the hydrogels in the dry state was not dependent on the gelatin content, the collapse extent and pore size decreased as the gelatin content increased. The gelatin loading also reduced the swelling ratio of the CML hydrogel and enhanced the hydrogel strength at 20°C due to gelation of the gelatin. The release behavior of the gelatin from the CML hydrogel could be controlled by many factors, such as the amount of gelatin, temperature, and solution pH. The weight loss of the composite hydrogel was expedited after gelatin loading and showed a positive relationship with the gelatin content. The results of in vitro cell culture in the hydrogels revealed that gelatin loading improved cell viability and promoted proliferation and glycosaminoglycans secretion of chondrocytes. This new scaffold production technology for chondrocyte encapsulation provides a further step towards CML applications in tissue engineering and other biomedical areas.
复合水凝胶可用作软骨生成的支架材料,这需要一个仿生环境来维持软骨细胞的形态和表型。在这项研究中,明胶分子被加载到由壳聚糖衍生物(CML)聚合形成的水凝胶中,形成半互穿聚合物网络。虽然水凝胶在干燥状态下的多孔结构不依赖于明胶含量,但随着明胶含量的增加,坍塌程度和孔径减小。明胶的负载还降低了 CML 水凝胶的溶胀比,并由于明胶的胶凝作用增强了 20°C 时水凝胶的强度。CML 水凝胶中明胶的释放行为可以通过许多因素来控制,例如明胶的量、温度和溶液 pH 值。明胶负载后,复合水凝胶的重量损失加快,并且与明胶含量呈正相关。水凝胶中体外细胞培养的结果表明,明胶负载提高了细胞活力,促进了软骨细胞的增殖和糖胺聚糖分泌。这种用于软骨细胞包封的新型支架生产技术为 CML 在组织工程和其他生物医学领域的应用提供了进一步的研究方向。