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具有精确pH响应抗菌功能的智能两性离子涂层用于骨植入物以对抗细菌感染。

Smart zwitterionic coatings with precise pH-responsive antibacterial functions for bone implants to combat bacterial infections.

作者信息

Hu Qinsheng, Du Yangrui, Bai Yangjing, Xing Dandan, Wu Chengcheng, Li Kaijun, Lang Shiying, Liu Xiaoyan, Liu Gongyan

机构信息

Department of Orthopedic Surgery and Orthopedic Research Institute, West China Hospital, Sichuan University, Chengdu 610041, China.

Department of Orthopedic Surgery, Ya'an People's Hospital, Ya'an 625000, China.

出版信息

Biomater Sci. 2024 Aug 20;12(17):4471-4482. doi: 10.1039/d4bm00932k.

Abstract

Hydrophilic antifouling coatings based on zwitterionic polymers have been widely applied for the surface modification of bone implants to combat biofilm formation and reduce the likelihood of implant-related infections. However, their long-term effectiveness is significantly limited by the lack of effective and precise antibacterial activity. Here, a pH-responsive smart zwitterionic antibacterial coating (PSB/GS coating) was designed and robustly fabricated onto titanium-base bone implants by using a facile two-step method. First, dopamine (DA) and a poly(sulfobetaine methacrylate--dopamine methacrylamide) (PSBDA) copolymer were deposited on implants mussel-inspired surface chemistry, resulting in a hydrophilic base coating with abundant catechol residues. Next, an amino-rich antibiotic, gentamicin sulfate (GS), was covalently linked to the coating through the formation of acid-sensitive Schiff base bonds between the amine groups of GS and the catechol residues present in both the zwitterionic polymer and the DA component. During the initial implantation period, the hydrophilic zwitterionic polymers demonstrated the desired anti-fouling properties that could effectively reduce protein and bacterial adhesion by over 90%. With time, the bacterial proliferation led to a decrease in the microenvironment pH value, resulting in the hydrolysis of the acid-sensitive Schiff base bonds, thereby releasing GS on demand and effectively enhancing the anti-biofilm properties of coatings. Benefiting from this synergistic antifouling and smart antibacterial activities, the PSB/GS coating exerted an excellent anti-infective activity in both preoperative and postoperative infection rat models. This proposed facile yet effective coating strategy is expected to provide a promising solution to combat bone implant-related infections.

摘要

基于两性离子聚合物的亲水性防污涂层已被广泛应用于骨植入物的表面改性,以对抗生物膜形成并降低植入物相关感染的可能性。然而,它们的长期有效性受到缺乏有效且精确的抗菌活性的显著限制。在此,通过一种简便的两步法设计并牢固地制备了一种pH响应型智能两性离子抗菌涂层(PSB/GS涂层)在钛基金属骨植入物上。首先,通过模仿贻贝的表面化学,将多巴胺(DA)和聚(甲基丙烯酸磺酸甜菜碱-甲基丙烯酰胺多巴胺)(PSBDA)共聚物沉积在植入物上,形成具有丰富儿茶酚残基的亲水性基础涂层。接下来,一种富含氨基的抗生素硫酸庆大霉素(GS)通过GS中的胺基与两性离子聚合物和DA成分中存在的儿茶酚残基之间形成酸敏感的席夫碱键而共价连接到涂层上。在初始植入期,亲水性两性离子聚合物表现出所需的防污性能,可有效减少蛋白质和细菌粘附超过90%。随着时间的推移,细菌增殖导致微环境pH值下降,导致酸敏感席夫碱键水解,从而按需释放GS并有效增强涂层的抗生物膜性能。受益于这种协同的防污和智能抗菌活性,PSB/GS涂层在术前和术后感染大鼠模型中均表现出优异的抗感染活性。这种提出的简便而有效的涂层策略有望为对抗骨植入物相关感染提供一个有前景的解决方案。

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