Duan Bin, Wu Lili, Yuan Xiaoyan, Hu Zhen, Li Xiulan, Zhang Yang, Yao Kangde, Wang Min
School of Materials Science and Engineering, Tianjin University, Tianjin 300072, China.
J Biomed Mater Res A. 2007 Dec 1;83(3):868-78. doi: 10.1002/jbm.a.31408.
Hybrid nanofibrous membranes of poly(lactic-co-glycolic acid) (PLGA) and chitosan with different chitosan amounts (32.3, 62.7, and 86.5%) were fabricated via a specially designed electrospinning setup consisting of two sets of separate syringe pumps and power supplies. After soaking in chloroform overnight to dissolve PLGA, the amount of chitosan in the hybrid membranes was determined. The structure, mechanical properties, water uptake, and cytocompatibilities of the nanofibrous membranes were investigated by scanning electron microscopy, tensile testing, incubation in phosphate buffer solution, and human embryo skin fibroblasts culturing. Results showed that the chitosan amount in PLGA/chitosan membranes could be well controlled by adjusting the number of syringe for electrospinning of PLGA or chitosan, respectively. Because of the introduction of chitosan, which is a naturally hydrophilic polymer, the hybrid PLGA/chitosan membranes after chitosan crosslinking exhibited good mechanical and water absorption properties. The cytocompatibility of hybrid PLGA/chitosan membranes was better than that of the electrospun PLGA membrane. The electrospun hybrid nanofibrous membranes of PLGA and chitosan appear to be promising for skin tissue engineering. The concept of using an electrospinning array to form multicomponent nanofibrous membranes will lead to the creation of novel scaffolds for tissue engineering applications.
通过由两组独立的注射泵和电源组成的特殊设计的静电纺丝装置,制备了具有不同壳聚糖含量(32.3%、62.7%和86.5%)的聚乳酸-乙醇酸共聚物(PLGA)与壳聚糖的混合纳米纤维膜。将其在氯仿中浸泡过夜以溶解PLGA后,测定混合膜中壳聚糖的含量。通过扫描电子显微镜、拉伸试验、在磷酸盐缓冲溶液中孵育以及培养人胚胎皮肤成纤维细胞,研究了纳米纤维膜的结构、力学性能、吸水性和细胞相容性。结果表明,通过分别调整用于静电纺丝PLGA或壳聚糖的注射器数量,可以很好地控制PLGA/壳聚糖膜中壳聚糖的含量。由于引入了天然亲水性聚合物壳聚糖,壳聚糖交联后的PLGA/壳聚糖混合膜表现出良好的力学性能和吸水性能。PLGA/壳聚糖混合膜的细胞相容性优于静电纺丝PLGA膜。PLGA和壳聚糖的静电纺丝混合纳米纤维膜在皮肤组织工程方面似乎很有前景。使用静电纺丝阵列形成多组分纳米纤维膜的概念将导致为组织工程应用创造新型支架。