Huang L, Nagapudi K, Apkarian R P, Chaikof E L
Department of Surgery, Emory University, Atlanta 30350, USA.
J Biomater Sci Polym Ed. 2001;12(9):979-93. doi: 10.1163/156856201753252516.
Type I collagen-PEO fibers and non-woven fiber networks were produced by the electrospinning of a weak acid solution of purified collagen at ambient temperature and pressure. As determined by high-resolution SEM and TEM. fiber morphology was influenced by solution viscosity, conductivity, and flow rate. Uniform fibers with a diameter range of 100-150 nm were produced from a 2-wt% solution of collagen-PEO at a flow rate of 100 microl min(-1). Ultimate tensile strength and elastic modulus of the resulting non-woven fabrics was dependent upon the chosen weight ratio of the collagen-PEO blend. 1H NMR dipolar magnetization transfer analysis suggested that the superior mechanical properties, observed for collagen-PEO blends of weight ratio 1:1, were due to the maximization of intermolecular interactions between the PEO and collagen components. The process outlined herein provides a convenient, non-toxic, non-denaturing approach for the generation collagen-containing nanofibers and non-woven fabrics that have potential application in wound healing, tissue engineering, and as hemostatic agents.
I型胶原-聚氧化乙烯(PEO)纤维和非织造纤维网络是通过在常温常压下对纯化胶原的弱酸溶液进行静电纺丝制备而成。通过高分辨率扫描电子显微镜(SEM)和透射电子显微镜(TEM)测定,纤维形态受溶液粘度、电导率和流速的影响。在流速为100微升/分钟的情况下,由2 wt%的胶原-PEO溶液制备出了直径范围为100-150纳米的均匀纤维。所得非织造织物的极限拉伸强度和弹性模量取决于所选择的胶原-PEO共混物的重量比。1H NMR偶极磁化转移分析表明,对于重量比为1:1的胶原-PEO共混物所观察到的优异机械性能,是由于PEO和胶原组分之间分子间相互作用的最大化。本文所述方法为生成含胶原的纳米纤维和非织造织物提供了一种方便、无毒、非变性的方法,这些纳米纤维和非织造织物在伤口愈合、组织工程以及作为止血剂方面具有潜在应用。