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具有表面再生能力的盐响应水凝胶中防污和抗菌性能的整合。

Integration of antifouling and antibacterial properties in salt-responsive hydrogels with surface regeneration capacity.

作者信息

Zhang Dong, Fu Yanhong, Huang Lei, Zhang Yanxian, Ren Baiping, Zhong Mingqiang, Yang Jintao, Zheng Jie

机构信息

College of Materials Science & Engineering, Zhejiang University of Technology, Hangzhou 310014, P. R. China.

出版信息

J Mater Chem B. 2018 Feb 14;6(6):950-960. doi: 10.1039/c7tb03018e. Epub 2018 Jan 25.

Abstract

The development of new antimicrobial materials and strategies is of importance for many biomedical and industrial applications. In this work, we report a new strategy to integrate distinct antimicrobial, antifouling, and stimuli-responsive properties into a single hydrogel to realize bacteria resistance, killing, and releasing functions. To achieve this design, we conjugated salt-responsive anti-polyelectrolyte polyDVBAPS (poly(3-(dimethyl(4-vinylbenzyl)ammonio)propyl sulfonate)) with antifouling polyHEAA (poly(N-hydroxyethyl acrylamide)) and antimicrobial AgNPs (silver nanoparticles) to form a hybrid hydrogel of polyDVBAPS-g-polyHEAA@AgNPs, among which polyHEAA functions as a general antifouling background to prevent bacteria adsorption on the surface, AgNPs act as antimicrobial agents to kill bacteria on the surface, and polyDVBAPS uses its unique salt-responsive, anti-polyelectrolyte property to release adherent bacteria from the surface. In this design, polyDVBAPS-g-polyHEAA@AgNPs hydrogels not only effectively resist bacteria attachment and kill the adherent bacteria, but also regenerate the antifouling surface of the hydrogel by releasing the adhered bacteria to keep the surface free from bacteria. The polyDVBAPS-g-polyHEAA@AgNPs hydrogels exhibited high surface resistance to bacteria adsorption (<10 cells per cm) for up to 4 days, high antibacterial activity by killing ∼99% of attached bacteria of both E. coli and S. aureus, and surface regeneration ability by releasing >96% of adherent live or dead bacteria from the surface upon a simple treatment of 1.0 M NaCl solution for 10 min. Upon the release of AgNPs, AgNPs were reloaded into the hydrogel again to achieve multiple antifouling, bactericidal, and regenerative properties. This work demonstrates a new design for a new multifunctional hydrogel to effectively achieve antimicrobial, antifouling, and surface regeneration properties, making this hydrogel very promising for antimicrobial applications.

摘要

新型抗菌材料和策略的开发对于许多生物医学和工业应用都至关重要。在本研究中,我们报告了一种新策略,即将独特的抗菌、防污和刺激响应特性整合到单一水凝胶中,以实现抗细菌黏附、杀菌和细菌释放功能。为实现这一设计,我们将盐响应性抗聚电解质聚DVBAPS(聚(3 - (二甲基(4 - 乙烯基苄基)铵基)丙基磺酸盐))与防污性聚HEAA(聚(N - 羟乙基丙烯酰胺))和抗菌性AgNPs(银纳米颗粒)共轭,形成聚DVBAPS - g - 聚HEAA@AgNPs杂化水凝胶,其中聚HEAA作为一般的防污背景,防止细菌吸附在表面,AgNPs作为抗菌剂杀死表面细菌,聚DVBAPS利用其独特的盐响应性抗聚电解质特性从表面释放附着的细菌。在该设计中,聚DVBAPS - g - 聚HEAA@AgNPs水凝胶不仅能有效抵抗细菌附着并杀死附着的细菌,还能通过释放附着的细菌使水凝胶的防污表面再生,保持表面无细菌。聚DVBAPS - g - 聚HEAA@AgNPs水凝胶在长达4天的时间内表现出对细菌吸附的高表面抗性(每平方厘米<10个细胞),对大肠杆菌和金黄色葡萄球菌的附着细菌具有高达约99%的高抗菌活性,并且在1.0 M NaCl溶液简单处理10分钟后,具有从表面释放>96%的附着活菌或死菌的表面再生能力。在AgNPs释放后,AgNPs又重新加载到水凝胶中,以实现多重防污、杀菌和再生特性。这项工作展示了一种新型多功能水凝胶的新设计,能有效实现抗菌、防污和表面再生特性,使这种水凝胶在抗菌应用方面极具前景。

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