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A preliminary in vitro study on the fabrication and tissue engineering applications of a novel chitosan bilayer material as a scaffold of human neofetal dermal fibroblasts.

机译:新型壳聚糖双层材料作为人新胎真皮成纤维细胞支架的制备和组织工程应用的体外初步研究。

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摘要

The bilayer structure of chitosan film and sponge was designed as a scaffold of skin tissue engineering and a dermis substitute. It was processed successively via the formation of a dense chitosan film by casting method and a porous chitosan sponge by lyophilization. The dry thickness of the film layer was 19.6 microm and that of the sponge layer was controlled at 60-80 microm. Porogens such as sodium chloride, glucose, and sucrose were used to create large pores of the chitosan sponge layer. Human neofetal dermal fibroblasts were seeded in the chitosan sponge layer and cultured for 4 weeks. It was found that the cells could grow and proliferate well in an extended shape on the flat bottom of large pores with 15-100 microm width and in spherical form on the rough pore walls or at the edges of micropores less than 5 microm. Fibroblasts after the culture could bind tightly with the sponge layer via newly formed extracellular matrices to give a living cell-matrix-chitosan composite. The bilayer chitosan material remained stable in shape and size during the cell culture. The results suggested that the bilayer chitosan material would be an alternative of collagen materials which was obviously contracted during cell culture.
机译:壳聚糖膜和海绵的双层结构被设计为皮肤组织工程的支架和真皮替代物。通过流延方法形成致密的壳聚糖膜并通过冻干形成多孔的壳聚糖海绵来对其进行连续加工。膜层的干厚度为19.6微米,海绵层的干厚度控制在60-80微米。诸如氯化钠,葡萄糖和蔗糖的成孔剂被用来产生壳聚糖海绵层的大孔。将人新胎真皮成纤维细胞接种在壳聚糖海绵层中并培养4周。发现细胞可以以15-100微米宽的大孔的平坦底部上的延长形状以及在粗糙的孔壁上或在小于5微米的微孔的边缘处呈球形的形式良好地生长和增殖。培养后的成纤维细胞可以通过新形成的细胞外基质与海绵层紧密结合,形成活细胞-基质-壳聚糖复合物。双层壳聚糖材料在细胞培养过程中保持形状和大小稳定。结果表明双层壳聚糖材料将替代胶原蛋白材料,胶原蛋白材料在细胞培养过程中明显收缩。

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