Demina Tatiana S, Kuryanova Anastasia S, Aksenova Nadejda A, Shubnyy Andrey G, Popyrina Tatiana N, Sokovikov Yaroslav V, Istranova Elena V, Ivanov Pavel L, Timashev Peter S, Akopova Tatiana A
Enikolopov Institute of Synthetic Polymeric Materials, Russian Academy of Sciences 70 Profsoyuznaya St. Moscow 117393 Russia
Institute for Regenerative Medicine, Sechenov University 8-2 Trubetskaya St. Moscow 119991 Russia.
RSC Adv. 2019 Nov 19;9(64):37652-37659. doi: 10.1039/c9ra07667k. eCollection 2019 Nov 13.
Graft-copolymers based on bioresorbable synthetic (oligo-/polylactide) and natural (chitosan and collagen/gelatin) components were synthesized through solid-state reactive co-extrusion and used for fabrication of fibrous non-woven mats the electrospinning technique. The effect of the macromolecular features of the initial components on the copolymer characteristics was evaluated using FTIR-spectroscopy, differential scanning calorimetry and elemental analysis. Dynamic light scattering analysis showed that the copolymers have a tendency to form stable ultra-fine dispersions with a mean size of macromolecular aggregates of 150 nm within chlorinated solvents. The copolymer-containing non-woven fibrous mats were fabricated an electrospinning procedure using chloroform as a solvent. An effect of the copolymer composition on the casting solution's viscosity, conductivity and surface tension was evaluated. Scanning electron microscopy showed that the obtained mats consist of randomly distributed fibers with a mean size of ∼5 μm and a more complex morphology than mats fabricated from neat polylactide. The proposed mechanochemical approach to obtain hybrid copolymeric compositions differs from typical liquid-phase methods in terms of high efficiency, simplicity and cleanness.
基于生物可吸收合成(低聚/聚丙交酯)和天然(壳聚糖以及胶原蛋白/明胶)成分的接枝共聚物通过固态反应共挤出法合成,并用于采用静电纺丝技术制备纤维非织造垫。使用傅里叶变换红外光谱法、差示扫描量热法和元素分析评估了初始成分的大分子特征对共聚物特性的影响。动态光散射分析表明,这些共聚物在氯化溶剂中倾向于形成稳定的超细分散体,大分子聚集体的平均尺寸为150纳米。含共聚物的非织造纤维垫采用静电纺丝工艺,以氯仿为溶剂制备而成。评估了共聚物组成对铸膜溶液粘度、电导率和表面张力的影响。扫描电子显微镜显示,所获得的垫子由平均尺寸约为5微米的随机分布纤维组成,且其形态比由纯聚丙交酯制成的垫子更为复杂。所提出的用于获得杂化共聚物组合物的机械化学方法在效率、简单性和清洁度方面不同于典型的液相方法。