Department of Chemistry and Industrial Chemistry, University of Genoa, Via Dodecaneso 31, 16146, Genoa, Italy.
Department of Chemistry and Industrial Chemistry, University of Genoa, Via Dodecaneso 31, 16146, Genoa, Italy; Institute of Chemical Sciences and Technologies "Giulio Natta" (SCITEC), Italian National Research Council (CNR), Via De Marini 6, 16149, Genoa, Italy.
Carbohydr Polym. 2020 May 1;235:115976. doi: 10.1016/j.carbpol.2020.115976. Epub 2020 Feb 11.
Chitosan-based membranes were prepared via electrospinning technique using a low concentrated acetic acid solution as solvent and poly(ethylene oxide) as co-spinning agent. Different solutions were rheologically characterized and increasing the solution viscosity was found to correspond to a better-defined morphology. The membranes were first subjected to a coagulation process with different baths in order to stabilize chitosan and the mats were found not able to withstand a strongly basic environment. Subsequently, a physical and a chemical crosslinking approach were separately optimized to obtain stable mats whose composition was assessed via thermogravimetric and spectroscopic techniques, proving in both cases the elimination of the co-spinning agent. Above all, the ionically crosslinked mats represent a class of extremely promising biomedical products being probably highly biocompatible and characterized by thin and homogenous nanofibers with a diameter of 200 nm, thus showing the ideal structure to foster cell viability.
采用静电纺丝技术,以低浓度乙酸溶液作为溶剂,聚氧化乙烯作为共纺丝剂,制备壳聚糖基膜。对不同溶液进行流变学特性分析,发现增加溶液黏度对应着更清晰的形态。首先,将膜进行不同浴的凝固处理,以稳定壳聚糖,发现纤维垫不能耐受强碱性环境。随后,分别对物理和化学交联方法进行优化,以获得稳定的垫子,通过热重和光谱技术评估其组成,在两种情况下都证明了共纺丝剂的消除。总之,离子交联垫是一类极具前景的生物医学产品,可能具有高度的生物相容性,其特点是具有 200nm 直径的均匀的纳米纤维,从而显示出促进细胞活力的理想结构。