纺织学报 ›› 2020, Vol. 41 ›› Issue (12): 7-12.doi: 10.13475/j.fzxb.20200406206
所属专题: 医用纺织品
宋广州1, 涂芳芳1, 丁梦瑶1, 戴梦男1, 殷音2, 董凤林3, 王建南1,4()
SONG Guangzhou1, TU Fangfang1, DING Mengyao1, DAI Mengnan1, YIN Yin2, DONG Fenglin3, WANG Jiannan1,4()
摘要:
为提高丝素蛋白(SF)材料的快速内皮化能力,解决血管组织工程面临的血栓和内膜增生难题,将具有双向调控血管细胞生长功能的降钙素基因相关肽(CGRP)通过静电相互作用引入丝素蛋白材料表面。首先选用含有2个羧基的己二酸(AA)与丝素蛋白分子进行反应,采用流延法制备AA改性SF膜,研究了改性SF膜的结构和膜表面对CGRP分子的加载能力。结果表明:随着AA质量占比的增加,SF的Zeta电位逐渐减小,当SF与AA的质量比由100:0变化为100:2.5时,SF的Zeta电位由-2.66 mV 下降至-5.4 mV;AA改性SF材料中引入了新的羧基和酰胺键,形成了以β-折叠结构为主的分子构象和Silk Ⅱ结晶结构;当SF与AA的质量比为100:2.5时,AA改性SF膜表面静电作用加载的CGRP含量比未改性SF膜提高了9倍。
中图分类号:
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