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一种基于蛋白质超分子组装的环境友好型抗菌涂层。

An Environmentally Benign Antimicrobial Coating Based on a Protein Supramolecular Assembly.

作者信息

Gu Jin, Su Yajuan, Liu Peng, Li Peng, Yang Peng

机构信息

Key Laboratory of Applied Surface and Colloids Chemistry, Ministry of Education, School of Chemistry and Chemical Engineering, Shaanxi Normal University , Xi'an 710119, China.

Center for Biomedical Engineering and Regenerative Medicine, Frontier Institute of Science and Technology, Xi'an Jiaotong University , Xi'an 710049, China.

出版信息

ACS Appl Mater Interfaces. 2017 Jan 11;9(1):198-210. doi: 10.1021/acsami.6b13552. Epub 2016 Dec 23.

Abstract

The use of antimicrobial materials, for example, silver nanoparticles, has been a cause for concern because they often exert an adverse effect on environmental and safety during their preparation and use. In this study, we report a class of green antimicrobial coating based on a supramolecular assembly of a protein extracted from daily food, without the addition of any other hazardous agents. It is found that a self-assembled nanofilm by mere hen egg white lysozyme has durable in vitro and in vivo broad-spectrum antimicrobial efficacy against Gram-positive/negative and fungi. Such enhanced antimicrobial capability over native lysozyme is attributed to a synergistic combination of positive charge and hydrophobic amino acid residues enriched on polymeric aggregates in the lysozyme nanofilm. Accompanied with high antimicrobial activity, this protein-based PTL material simultaneously exhibits the integration of multiple functions including antifouling, antibiofilm, blood compatibility, and low cytotoxicity due to the existence of surface hydration effect. Moreover, the bioinspired adhesion mediated by the amyloid structure contained in the nanofilm induces robust transfer and self-adhesion of the material onto virtually arbitrary substrates by a simple one-step aqueous coating or solvent-free printing in 1 min, thereby allowing an ultrafast route into practical implications for surface-functionalized commodity and biomedical devices. Our results demonstrate that the application of pure proteinaceous substance may afford a cost-effective green biomaterial that has high antimicrobial activity and low environmental impact.

摘要

例如,抗菌材料银纳米颗粒的使用一直令人担忧,因为它们在制备和使用过程中常常对环境和安全产生不利影响。在本研究中,我们报道了一类基于从日常食物中提取的蛋白质的超分子组装的绿色抗菌涂层,无需添加任何其他有害试剂。研究发现,仅由鸡蛋清溶菌酶形成的自组装纳米膜对革兰氏阳性/阴性菌和真菌具有持久的体外和体内广谱抗菌功效。这种相对于天然溶菌酶增强的抗菌能力归因于溶菌酶纳米膜中聚合物聚集体上富集的正电荷和疏水氨基酸残基的协同组合。伴随着高抗菌活性,这种基于蛋白质的PTL材料由于表面水化效应的存在,同时展现出包括防污、抗生物膜、血液相容性和低细胞毒性在内的多种功能的整合。此外,由纳米膜中包含的淀粉样结构介导的仿生粘附通过简单的一步水性涂层或1分钟内的无溶剂印刷,诱导材料在几乎任意基底上实现强大的转移和自粘附,从而为表面功能化商品和生物医学设备提供了一条超快的实际应用途径。我们的结果表明,纯蛋白质物质的应用可能提供一种具有高抗菌活性和低环境影响的经济高效的绿色生物材料。

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