Department of Aerospace and Mechanical Engineering, University of Arizona, Tucson, AZ 85721, USA.
Biopolymers. 2012 Dec;97(12):1026-36. doi: 10.1002/bip.22120.
Electrospinning of natural polymer nanofibers useful for biomedical applications often requires the use of cytotoxic organic solvents. In this study, gelatin nanofibers are electrospun from phosphate buffer saline/ethanol binary mixtures as a benign solvent at ambient temperature. The influences of ionic strength, ethanol concentration, and gelatin concentration on the electrospinnability of gelatin solutions and the fiber microarchitectures are analyzed. The electrospun scaffolds retain their morphologies during vapor-phase crosslinking with glutaraldehyde in ethanol and the subsequent removal of salts contained in the nanofibers via water rinsing. When fully hydrated, the mechanically preconditioned scaffolds display a Young's modulus of 25.5 ± 5.3 kPa, tensile strength of 55.5 ± 13.9 kPa, deformability of 160 ± 15%, and resilience of 89.9 ± 1.8%. When cultured on the gelatin scaffolds, 3T3 fibroblasts displayed spindle-like morphology, similar to the cell's normal morphology in a 3D extracellular matrix.
用于生物医学应用的天然聚合物纳米纤维的静电纺丝通常需要使用细胞毒性有机溶剂。在这项研究中,明胶纳米纤维是从磷酸盐缓冲盐水/乙醇二元混合物中在环境温度下作为良性溶剂静电纺丝而成的。分析了离子强度、乙醇浓度和明胶浓度对明胶溶液的可纺性和纤维微观结构的影响。静电纺丝支架在乙醇中与戊二醛进行气相交联以及随后通过水洗去除纳米纤维中所含的盐时保留其形态。完全水合后,机械预处理支架的杨氏模量为 25.5±5.3 kPa,拉伸强度为 55.5±13.9 kPa,变形性为 160±15%,回弹性为 89.9±1.8%。当在明胶支架上培养时,3T3 成纤维细胞呈现出类似于细胞在 3D 细胞外基质中的正常形态的梭形形态。