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用于抗菌应用的新型氨基酸基纳米凝胶共轭缝线。

Novel amino acid based nanogel conjugated suture for antibacterial application.

作者信息

Wu De-Qun, Cui Hai-Chun, Zhu Jie, Qin Xiao-Hong, Xie Ting

机构信息

Key Laboratory of Textile Science & Technology, Ministry Education, College of Textiles, Donghua University, No. 2999 North Renmin Road, Songjiang, Shanghai 201620, China.

出版信息

J Mater Chem B. 2016 Apr 21;4(15):2606-2613. doi: 10.1039/c6tb00186f. Epub 2016 Mar 29.

Abstract

In this study, a promising preparation strategy for antibacterial silk sutures with an l-lysine based nanogel grafting is reported. The triclosan-loaded nanogels (NGTLs) were fabricated by the convenient enzymatic degradation of macrogels, namely, triclosan-loaded macrogel, degrading into NGTLs triggered by the trypsin. Nanogels, about 60 nm and 90 nm in diameter, were obtained after 7 days of biodegradation in the enzyme solution. Triclosan maintained a sustained release period over 260 hours in trypsin solution with the concentration of 0.1 mg mL. Triclosan-loaded nanogel grafted silk sutures (TLNGSs) were characterized by an antibacterial activity assessment. Our results showed that TLNGS had long-term efficacy against pathogens such as S. aureus and E. coli. In particular, these TLNGSs had a relative decreased stable size of inhibition zones on agar plates in the first four days. The antibacterial activity could be sufficient evidence of the prevention of potential early wound infections. The mechanical strength tests indicated negligible influence on TLNGSs compared to commercial ones. The novel antibacterial silk sutures showed acceptable in vitro cytotoxicity according to ISO 10993-5. This novel biocompatible and biodegradable nanogel grafting to silk sutures provides an effective and universal approach for the treatment of bacterial infections.

摘要

在本研究中,报道了一种基于L-赖氨酸纳米凝胶接枝的抗菌丝缝线的制备策略。通过大凝胶(即载有三氯生的大凝胶)的简便酶降解制备载有三氯生的纳米凝胶(NGTLs),在胰蛋白酶的触发下,载有三氯生的大凝胶降解为NGTLs。在酶溶液中进行7天的生物降解后,获得了直径约为60纳米和90纳米的纳米凝胶。三氯生在浓度为0.1毫克/毫升的胰蛋白酶溶液中保持了超过260小时的持续释放期。通过抗菌活性评估对载有三氯生的纳米凝胶接枝丝缝线(TLNGSs)进行了表征。我们的结果表明,TLNGS对金黄色葡萄球菌和大肠杆菌等病原体具有长期疗效。特别是,这些TLNGSs在前四天在琼脂平板上的抑菌圈大小相对稳定地减小。抗菌活性足以证明可预防潜在的早期伤口感染。机械强度测试表明,与市售产品相比,TLNGSs受到的影响可忽略不计。根据ISO 10993-5,这种新型抗菌丝缝线显示出可接受的体外细胞毒性。这种新型的生物相容性和可生物降解的纳米凝胶接枝到丝缝线上,为治疗细菌感染提供了一种有效且通用的方法。

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