Novel nanomaterials-based combating strategies against drug-resistant bacteria.

IF 5.4 2区 医学 Q1 BIOPHYSICS
Daohong Zhang, Deepak Kukkar, Poornima Bhatt, Ki-Hyun Kim, Kamalpreet Kaur, Jianlong Wang
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引用次数: 0

Abstract

Numerous types of contemporary antibiotic treatment regimens have become ineffective with the increasing incidence of drug tolerance. As a result, it is pertinent to seek novel and innovative solutions such as antibacterial nanomaterials (NMs) for the prohibition and treatment of hazardous microbial infections. Unlike traditional antibiotics (e.g., penicillin and tetracycline), the unique physicochemical characteristics (e.g., size dependency) of NMs endow them with bacteriostatic and bactericidal potential. However, it is yet difficult to mechanistically predict or decipher the networks of molecular interaction (e.g., between NMs and the biological systems) and the subsequent immune responses. In light of such research gap, this review outlines various mechanisms accountable for the inception of drug tolerance in bacteria. It also delineates the primary factors governing the NMs-induced molecular mechanisms against microbes, specifically drug-resistant bacteria along with the various NM-based mechanisms of antibacterial activity. The review also explores future directions and prospects for NMs in combating drug-resistant bacteria, while addressing challenges to their commercial viability within the healthcare industry.

新型纳米材料对抗耐药细菌的策略。
随着药物耐受性的增加,许多类型的当代抗生素治疗方案已变得无效。因此,寻求新的和创新的解决方案,如抗菌纳米材料(NMs),以禁止和治疗危险的微生物感染是相关的。与传统抗生素(如青霉素和四环素)不同,NMs独特的物理化学特性(如大小依赖性)赋予它们抑菌和杀菌潜力。然而,从机制上预测或破译分子相互作用网络(例如NMs与生物系统之间)和随后的免疫反应仍然很困难。鉴于这些研究差距,本文概述了细菌耐药开始的各种机制。它还描述了纳米颗粒诱导的针对微生物的分子机制的主要因素,特别是耐药细菌,以及各种基于纳米颗粒的抗菌活性机制。本文还探讨了纳米颗粒在对抗耐药细菌方面的未来发展方向和前景,同时解决了其在医疗保健行业中商业可行性的挑战。
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来源期刊
Colloids and Surfaces B: Biointerfaces
Colloids and Surfaces B: Biointerfaces 生物-材料科学:生物材料
CiteScore
11.10
自引率
3.40%
发文量
730
审稿时长
42 days
期刊介绍: Colloids and Surfaces B: Biointerfaces is an international journal devoted to fundamental and applied research on colloid and interfacial phenomena in relation to systems of biological origin, having particular relevance to the medical, pharmaceutical, biotechnological, food and cosmetic fields. Submissions that: (1) deal solely with biological phenomena and do not describe the physico-chemical or colloid-chemical background and/or mechanism of the phenomena, and (2) deal solely with colloid/interfacial phenomena and do not have appropriate biological content or relevance, are outside the scope of the journal and will not be considered for publication. The journal publishes regular research papers, reviews, short communications and invited perspective articles, called BioInterface Perspectives. The BioInterface Perspective provide researchers the opportunity to review their own work, as well as provide insight into the work of others that inspired and influenced the author. Regular articles should have a maximum total length of 6,000 words. In addition, a (combined) maximum of 8 normal-sized figures and/or tables is allowed (so for instance 3 tables and 5 figures). For multiple-panel figures each set of two panels equates to one figure. Short communications should not exceed half of the above. It is required to give on the article cover page a short statistical summary of the article listing the total number of words and tables/figures.
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