Department of Chemistry and Biochemistry, Mendel University in Brno, Brno, Czech Republic.
Central European Institute of Technology, Brno University of Technology, Brno, Czech Republic.
Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2020 Sep;12(5):e1636. doi: 10.1002/wnan.1636. Epub 2020 May 3.
With a growing health threat of bacterial resistance to antibiotics, the nanomaterials have been extensively studied as an alternative. It is assumed that antimicrobial nanomaterials can affect bacteria by several mechanisms simultaneously and thereby overcome antibiotic resistance. Another promising potential use is employing nanomaterials as nanocarriers for antibiotics in order to overcome bacterial defense mechanisms. The passive targeting of nanomaterials is the often used strategy for bacterial treatment, including intracellular infections of macrophages. Furthermore, the specific targeting enhances the efficacy of antimicrobials and reduces side effects. This review aims to discuss advantages, disadvantages, and challenges of nanomaterials in the context of the targeting strategies for antimicrobials as advanced tools for treatments of bacterial infections. This article is categorized under: Therapeutic Approaches and Drug Discovery > Nanomedicine for Infectious Disease.
随着细菌对抗生素耐药性的健康威胁不断增加,纳米材料已被广泛研究作为替代品。人们认为,抗菌纳米材料可以通过几种机制同时影响细菌,从而克服抗生素耐药性。另一个有前途的潜在用途是将纳米材料用作抗生素的纳米载体,以克服细菌的防御机制。纳米材料的被动靶向是治疗细菌的常用策略,包括巨噬细胞的细胞内感染。此外,特异性靶向增强了抗菌药物的疗效,减少了副作用。本文旨在讨论纳米材料在抗菌药物靶向策略方面的优势、劣势和挑战,将其作为治疗细菌感染的先进工具。本文属于以下分类:治疗方法和药物发现 > 用于传染病的纳米医学。