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用于神经修复的可调多糖水凝胶共混物的制备与表征。

Fabrication and characterization of tunable polysaccharide hydrogel blends for neural repair.

机构信息

Department of Biomedical Engineering, Michigan Technological University, Houghton, MI 49931-1295, USA.

出版信息

Acta Biomater. 2011 Apr;7(4):1634-43. doi: 10.1016/j.actbio.2010.11.039. Epub 2010 Dec 1.

Abstract

Hydrogels are an important class of biomaterials that have the potential to be used as three-dimensional tissue engineering scaffolds for regenerative medicine. This is especially true in the central nervous system, where neurons do not have the ability to regenerate due to the prohibitory local environment following injury. Hydrogels can fill an injury site, replacing the growth-prohibiting environment with a more growth-permissive one. In this study, dextran and chitosan were incorporated into a methylcellulose and agarose hydrogel blend. This created several thermally sensitive polysaccharide hydrogel blends that had tunable mechanical and surface charge properties. Cortical neurons were cultured on the hydrogels to determine the blend that had the greatest neuron compatibility. Our results show that softer, more positively charged polysaccharide hydrogel blends allow for greater neuron attachment and neurite extension, showing their promise as CNS regeneration scaffolds.

摘要

水凝胶是一类重要的生物材料,具有作为三维组织工程支架用于再生医学的潜力。在中枢神经系统中尤其如此,由于神经元在受伤后所处的局部环境具有抑制性,因此它们没有再生的能力。水凝胶可以填补损伤部位,将生长抑制环境替换为更有利于生长的环境。在这项研究中,葡聚糖和壳聚糖被掺入甲基纤维素和琼脂糖水凝胶混合物中。这创造了几种热敏感多糖水凝胶混合物,它们具有可调节的机械和表面电荷特性。皮质神经元在水凝胶上培养,以确定具有最大神经元相容性的混合物。我们的结果表明,更柔软、带更多正电荷的多糖水凝胶混合物允许更大的神经元附着和突起延伸,显示出它们作为中枢神经系统再生支架的潜力。

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