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化学功能化和/或光热纳米颗粒的抗菌作用

Antimicrobial Effects of Chemically Functionalized and/or Photo-Heated Nanoparticles.

作者信息

Pezzi Luigia, Pane Alfredo, Annesi Ferdinanda, Losso Maria Adele, Guglielmelli Alexa, Umeton Cesare, De Sio Luciano

机构信息

CNR-Lab. Licryl, Institute NANOTEC, 87036 Arcavacata di Rende, Italy.

DiBEST, University of Calabria, 87036 Arcavacata di Rende, Italy.

出版信息

Materials (Basel). 2019 Apr 2;12(7):1078. doi: 10.3390/ma12071078.

Abstract

Antibiotic resistance refers to when microorganisms survive and grow in the presence of specific antibiotics, a phenomenon mainly related to the indiscriminate widespread use and abuse of antibiotics. In this framework, thanks to the design and fabrication of original functional nanomaterials, nanotechnology offers a powerful weapon against several diseases such as cancer and pathogenic illness. Smart nanomaterials, such as metallic nanoparticles and semiconductor nanocrystals, enable the realization of novel drug-free medical therapies for fighting against antibiotic-resistant bacteria. In the light of the latest developments, we highlight the outstanding capabilities of several nanotechnology-inspired approaches to kill antibiotic-resistant bacteria. Chemically functionalized silver and titanium dioxide nanoparticles have been employed for their intrinsic toxicity, which enables them to exhibit an antimicrobial activity while, in a different approach, photo-thermal properties of metallic nanoparticles have been theoretically studied and experimentally tested against several temperature sensitive (mesophilic) bacteria. We also show that it is possible to combine a highly localized targeting with a plasmonic-based heating therapy by properly functionalizing nanoparticle surfaces with covalently linked antibodies. As a perspective, the utilization of properly engineered and chemically functionalized nanomaterials opens a new roads for realizing antibiotic free treatments against pathogens and related diseases.

摘要

抗生素耐药性是指微生物在特定抗生素存在的情况下存活并生长,这一现象主要与抗生素的滥用和不加区分的广泛使用有关。在此框架下,得益于原创功能纳米材料的设计与制造,纳米技术为对抗癌症和致病疾病等多种疾病提供了有力武器。智能纳米材料,如金属纳米颗粒和半导体纳米晶体,能够实现对抗耐药细菌的新型无药医学疗法。鉴于最新进展,我们着重介绍了几种受纳米技术启发的方法在杀灭耐药细菌方面的卓越能力。化学功能化的银和二氧化钛纳米颗粒因其内在毒性而被采用,这使其具有抗菌活性,而在另一种方法中,金属纳米颗粒的光热特性已针对几种温度敏感(嗜温)细菌进行了理论研究和实验测试。我们还表明,通过用共价连接的抗体对纳米颗粒表面进行适当功能化,可以将高度局部化的靶向与基于等离子体的热疗相结合。展望未来,利用经过适当工程设计和化学功能化的纳米材料为实现针对病原体及相关疾病的无抗生素治疗开辟了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b83/6479897/ce26ae18775a/materials-12-01078-g005.jpg

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