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首页> 外文期刊>Journal of biomedical materials research, Part A >Development of an Infection-Resistant Bifunctionalized Dacron Biomaterial
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Development of an Infection-Resistant Bifunctionalized Dacron Biomaterial

机译:抗感染的双功能涤纶生物材料的开发。

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摘要

A novel infection-resistant biomaterial was created by applying the antibiotic Ciprofloxacin (Cipro) to a recently developed bifunctionalized polyethylene terephthalate ("polyester," Dacron) material using textile-dyeing technology. Dacron was modified via exposure to ethylenediamine (EDA) to create amine and carboxylic acid sites within the polymer backbone. Cipro was applied to the bifunctionalized Dacron construct under varied experimental conditions, with resulting antimicrobial activity determined via zone of inhibition. Dacron segments treated at a liquor ratio of 20:1, with 5 percent Cipro on weight of fabric (owf), at pH 8 for 4 h at 70 deg C followed by autoclaving showed antimicrobial activity for 78 days (length of study). Segments treated similarly but without autoclaving lost activity within 1 day. Dyeing time and temperature did not significantly affect antibiotic release/activity, but segments dyed at pHs higher or lower than 8 had less antimicrobial activity. The long-term infection resistance provided by this technique may answer major problems of infection from which implantable Dacron biomedical devices suffer.
机译:通过将抗生素环丙沙星(Cipro)应用于最近开发的双功能聚对苯二甲酸乙二醇酯(“涤纶”,Dacron)材料,并使用纺织品染色技术,创建了一种新型的抗感染生物材料。涤纶通过暴露于乙二胺(EDA)进行修饰,在聚合物主链中形成胺和羧酸位点。在不同的实验条件下,将Cipro应用于双功能Dacron构建体,并通过抑制区确定所产生的抗菌活性。以20:1的液体比率处理的涤纶纤维段,以占织物重量(owf)5%的Cipro,在pH值为8的条件下于70℃下处理4小时,然后进行高压灭菌,显示抗微生物活性达78天(研究时间)。各段的治疗方法相似,但在1天内没有高压灭菌,因此没有活动。染色时间和温度并未显着影响抗生素的释放/活性,但在高于或低于8的pH值下染色的片段的抗菌活性均较低。该技术提供的长期抗感染性可以解决植入式达克龙生物医学设备遭受的主要感染问题。

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