Li Zhiming, Ma Jiazhi, Li Rongguo, Yin Xueqiong, Dong Wenyuan, Pan Changjiang
Hainan Provincial Fine Chemical Engineering Research Center, School of Materials and Chemical Engineering, Hainan University 58th Renmin Road Haikou Hainan 570228 P. R. China
Faculty of Mechanical and Materials Engineering, Huaiyin Institute of Technology Huai'an Jiangsu 223003 P. R. China.
RSC Adv. 2018 Sep 5;8(55):31322-31330. doi: 10.1039/c8ra05536j.
A heparin-like composite membrane was fabricated through electrospinning chitosan nanoparticles (CN) together with an ethylcellulose (EC) ethanol solution onto a bacterial cellulose sulfate membrane (BCS). Scanning electron microscopy images revealed that there were no chitosan particles in the obtained composite CN-EC/BCS membranes (CEB), indicating CN had been stretched to nanofibers. X-ray photoelectron spectroscopy verified the existence of -NH from chitosan and -SO from BCS on the surface of CEB membranes. Positively charged CN in the electrospinning solution and negatively charged BCS on the collector increased the electrostatic force and the electrospinning ability of the EC was increased. The membrane was hydrophobic, with a water contact angle higher than 120°. CEB membranes expressed good blood compatibility according to the results of coagulation time and platelet adhesion experiments. No platelets adhered on the surface of the CEB membranes. An inflammatory response was investigated according to activation of the macrophages seeded onto the membranes. Macrophages seeded on CEB membranes are not activated after 24 h incubation.
通过将壳聚糖纳米颗粒(CN)与乙基纤维素(EC)乙醇溶液一起静电纺丝到细菌硫酸纤维素膜(BCS)上,制备了一种肝素样复合膜。扫描电子显微镜图像显示,在所得的复合CN-EC/BCS膜(CEB)中没有壳聚糖颗粒,这表明CN已被拉伸成纳米纤维。X射线光电子能谱证实了CEB膜表面存在壳聚糖的-NH和BCS的-SO。静电纺丝溶液中带正电的CN和收集器上带负电的BCS增加了静电力,提高了EC的静电纺丝能力。该膜具有疏水性,水接触角大于120°。根据凝血时间和血小板黏附实验结果,CEB膜表现出良好的血液相容性。没有血小板黏附在CEB膜表面。根据接种在膜上的巨噬细胞的活化情况研究了炎症反应。接种在CEB膜上的巨噬细胞在孵育24小时后未被激活。