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细菌响应仿生硒纳米系统用于检测和抑制多重耐药菌感染。

Bacteria-Responsive Biomimetic Selenium Nanosystem for Multidrug-Resistant Bacterial Infection Detection and Inhibition.

机构信息

Department of Chemistry , Jinan University , Guangzhou 510632 , China.

College of Life Sciences , Shenzhen University , Shenzhen , Guangdong 518060 , China.

出版信息

ACS Nano. 2019 Dec 24;13(12):13965-13984. doi: 10.1021/acsnano.9b05766. Epub 2019 Nov 22.

Abstract

Multidrug-resistant (MDR) bacterial infections are a severe threat to public health owing to their high risk of fatality. Noticeably, the premature degradation and undeveloped imaging ability of antibiotics still remain challenging. Herein, a selenium nanosystem in response to a bacteria-infected microenvironment is proposed as an antibiotic substitute to detect and inhibit methicillin-resistant (MRSA) with a combined strategy. Using natural red blood cell membrane (RBCM) and bacteria-responsive gelatin nanoparticles (GNPs), the Ru-Se@GNP-RBCM nanosystem was constructed for effective delivery of Ru-complex-modified selenium nanoparticles (Ru-Se NPs). Taking advantage of natural RBCM, the immune system clearance was reduced and exotoxins were neutralized efficiently. GNPs could be degraded by gelatinase in pathogen-infected areas ; therefore, Ru-Se NPs were released to destroy the bacteria cells. Ru-Se NPs with intense fluorescence imaging capability could accurately monitor the infection treatment process. Moreover, excellent bacteria elimination and a facilitated wound healing process were confirmed by two kinds of MRSA-infected mice models. Overall, the above advantages proved that the prepared nanosystem is a promising antibiotic alternative to combat the ever-threatening multidrug-resistant bacteria.

摘要

多药耐药(MDR)细菌感染由于其高致死风险,对公共健康构成严重威胁。值得注意的是,抗生素的过早降解和不发达的成像能力仍然是一个挑战。在此,提出了一种响应细菌感染微环境的硒纳米系统,作为一种抗生素替代品,采用联合策略来检测和抑制耐甲氧西林金黄色葡萄球菌(MRSA)。利用天然红细胞膜(RBCM)和细菌响应明胶纳米颗粒(GNPs),构建了 Ru-Se@GNP-RBCM 纳米系统,用于有效递输送 Ru 配合物修饰的硒纳米颗粒(Ru-Se NPs)。利用天然 RBCM,减少了免疫系统的清除,并有效地中和了外毒素。GNPs 可以在病原体感染区域被明胶酶降解;因此,Ru-Se NPs 被释放以破坏细菌细胞。具有强烈荧光成像能力的 Ru-Se NPs 可以准确监测感染治疗过程。此外,通过两种 MRSA 感染的小鼠模型证实了优异的细菌消除和促进伤口愈合过程。总的来说,上述优势证明了所制备的纳米系统是一种有前途的抗生素替代品,可以对抗日益威胁的多药耐药细菌。

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