Nanotechnology-driven strategies to enhance the treatment of drug-resistant bacterial infections.

Junjie Zhang, Ming Liu, Haiyang Guo, Shuwen Gao, Yanling Hu, Guisheng Zeng, Dongliang Yang
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Abstract

The misuse of antibiotics has led to increased bacterial resistance, posing a global public health crisis and seriously endangering lives. Currently, antibiotic therapy remains the most common approach for treating bacterial infections, but its effectiveness against multidrug-resistant bacteria is diminishing due to the slow development of new antibiotics and the increase of bacterial drug resistance. Consequently, developing new a\ntimicrobial strategies and improving antibiotic efficacy to combat bacterial infection has become an urgent priority. The emergence of nanotechnology has revolutionized the traditional antibiotic treatment, presenting new opportunities for refractory bacterial infection. Here we comprehensively review the research progress in nanotechnology-based antimicrobial drug delivery and highlight diverse platforms designed to target different bacterial resistance mechanisms. We also outline the use of nanotechnology in combining antibiotic therapy with other therapeutic modalities to enhance the therapeutic effectiveness of drug-resistant bacterial infections. These innovative therapeutic strategies have the potential to enhance bacterial susceptibility and overcome bacterial resistance. Finally, the challenges and prospects for the application of nanomaterial-based antimicrobial strategies in combating bacterial resistance are discussed. This article is categorized under: Biology-Inspired Nanomaterials > Nucleic Acid-Based Structures Therapeutic Approaches and Drug Discovery > Nanomedicine for Infectious Disease.

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以纳米技术为驱动力的策略,加强对耐药性细菌感染的治疗。
抗生素的滥用导致细菌耐药性增加,造成全球公共卫生危机,严重危害生命。目前,抗生素疗法仍是治疗细菌感染最常用的方法,但由于新抗生素开发缓慢和细菌耐药性增加,抗生素对多重耐药细菌的疗效正在减弱。因此,开发新的抗菌策略和提高抗生素疗效以抗击细菌感染已成为当务之急。纳米技术的出现彻底改变了传统的抗生素治疗方法,为难治性细菌感染带来了新的机遇。在此,我们全面回顾了基于纳米技术的抗菌药物递送研究进展,并重点介绍了针对不同细菌耐药机制而设计的各种平台。我们还概述了如何利用纳米技术将抗生素疗法与其他治疗方式相结合,以提高耐药细菌感染的治疗效果。这些创新的治疗策略有可能提高细菌的易感性并克服细菌的耐药性。最后,讨论了应用基于纳米材料的抗菌策略对抗细菌耐药性所面临的挑战和前景。本文归类于生物启发纳米材料 > 核酸基结构治疗方法与药物发现 > 用于传染病的纳米医学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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