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载银型抗菌肽的多孔硅纳米载体的协同和按需释放及其用于抗菌和创伤愈合

Synergistic and On-Demand Release of Ag-AMPs Loaded on Porous Silicon Nanocarriers for Antibacteria and Wound Healing.

机构信息

Institute of Analytical Chemistry, Department of Chemistry, Zhejiang University, Hangzhou 310058, China.

出版信息

ACS Appl Mater Interfaces. 2021 Apr 14;13(14):16127-16141. doi: 10.1021/acsami.1c02161. Epub 2021 Mar 31.

Abstract

Due to the abuse of antibiotics, antimicrobial resistance is rapidly emerging and becoming a major global risk for public health. Thus, there is an urgent need for reducing the use of antibiotics, finding novel treatment approaches, and developing controllable release systems. In this work, a dual synergistic antibacterial platform with on-demand release ability based on silver nanoparticles (AgNPs) and antimicrobial peptide (AMP) coloaded porous silicon (PSi) was developed. The combination of AgNPs and AMPs (Tet-213, KRWWKWWRRC) exhibited an excellent synergistic antibacterial effect. As a carrier, porous silicon can efficiently load AgNPs and AMP under mild conditions and give the platform an on-demand release ability and a synergistic release effect. The AgNPs and AMP coloaded porous silicon microparticles (AgNPs-AMP@PSiMPs) exhibited an acid pH and reactive oxygen species (ROS)-stimulated release of silver ions (Ag) and AMPs under bacterial infection conditions because of oxidation and desorption effects. Moreover, the release of the bactericide could be promoted by each other due to the interplay between AgNPs and Tet-213. antibacterial tests demonstrated that AgNPs-AMP@PSiMPs inherited the intrinsic properties and synergistic antibacterial efficiency of both bactericides. In addition, wound dressing loaded with AgNPs-AMP@PSiMPs showed outstanding bacteria-killing activity, accelerating wound-healing, and low biotoxicity in a-infected rat wound model. The present work demonstrated that PSiMPS might be an efficient platform for loading the antibiotic-free bactericide, which could synergistically and on-demand release to fight wound infection and promote wound healing.

摘要

由于抗生素的滥用,抗菌药物耐药性迅速出现,成为公共卫生的主要全球风险。因此,迫切需要减少抗生素的使用、寻找新的治疗方法和开发可控释放系统。在这项工作中,开发了一种基于载银纳米粒子(AgNPs)和抗菌肽(AMP)共载多孔硅(PSi)的具有按需释放能力的双重协同抗菌平台。AgNPs 和 AMPs(Tet-213、KRWWKWWRRC)的组合表现出优异的协同抗菌效果。作为载体,多孔硅可以在温和条件下高效负载 AgNPs 和 AMPs,并赋予平台按需释放能力和协同释放效应。AgNPs 和 AMP 共载多孔硅微球(AgNPs-AMP@PSiMPs)在细菌感染条件下,由于氧化和解吸作用,表现出酸 pH 和活性氧(ROS)刺激的银离子(Ag)和 AMPs 的释放。此外,由于 AgNPs 和 Tet-213 的相互作用,杀菌剂的释放可以相互促进。抗菌试验表明,AgNPs-AMP@PSiMPs 继承了两种杀菌剂的固有特性和协同抗菌效率。此外,载有 AgNPs-AMP@PSiMPs 的伤口敷料在感染大鼠伤口模型中表现出出色的杀菌活性,加速伤口愈合,生物毒性低。本工作表明 PSiMPS 可能是一种有效的抗生素-free 杀菌剂负载平台,可协同且按需释放以对抗伤口感染并促进伤口愈合。

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