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纳米技术作为对抗微生物的新方法:提供抗生素的替代方案

Nanotechnology as a Novel Approach in Combating Microbes Providing an Alternative to Antibiotics.

作者信息

Mubeen Bismillah, Ansar Aunza Nayab, Rasool Rabia, Ullah Inam, Imam Syed Sarim, Alshehri Sultan, Ghoneim Mohammed M, Alzarea Sami I, Nadeem Muhammad Shahid, Kazmi Imran

机构信息

Institute of Molecular Biology and Biotechnology, The University of Lahore, Lahore 54000, Pakistan.

Department of Pharmaceutics, College of Pharmacy, King Saud University, Riyadh 11451, Saudi Arabia.

出版信息

Antibiotics (Basel). 2021 Nov 30;10(12):1473. doi: 10.3390/antibiotics10121473.

Abstract

The emergence of infectious diseases promises to be one of the leading mortality factors in the healthcare sector. Although several drugs are available on the market, newly found microorganisms carrying multidrug resistance (MDR) against which existing drugs cannot function effectively, giving rise to escalated antibiotic dosage therapies and the need to develop novel drugs, which require time, money, and manpower. Thus, the exploitation of antimicrobials has led to the production of MDR bacteria, and their prevalence and growth are a major concern. Novel approaches to prevent antimicrobial drug resistance are in practice. Nanotechnology-based innovation provides physicians and patients the opportunity to overcome the crisis of drug resistance. Nanoparticles have promising potential in the healthcare sector. Recently, nanoparticles have been designed to address pathogenic microorganisms. A multitude of processes that can vary with various traits, including size, morphology, electrical charge, and surface coatings, allow researchers to develop novel composite antimicrobial substances for use in different applications performing antimicrobial activities. The antimicrobial activity of inorganic and carbon-based nanoparticles can be applied to various research, medical, and industrial uses in the future and offer a solution to the crisis of antimicrobial resistance to traditional approaches. Metal-based nanoparticles have also been extensively studied for many biomedical applications. In addition to reduced size and selectivity for bacteria, metal-based nanoparticles have proven effective against pathogens listed as a priority, according to the World Health Organization (WHO). Moreover, antimicrobial studies of nanoparticles were carried out not only in vitro but in vivo as well in order to investigate their efficacy. In addition, nanomaterials provide numerous opportunities for infection prevention, diagnosis, treatment, and biofilm control. This study emphasizes the antimicrobial effects of nanoparticles and contrasts nanoparticles' with antibiotics' role in the fight against pathogenic microorganisms. Future prospects revolve around developing new strategies and products to prevent, control, and treat microbial infections in humans and other animals, including viral infections seen in the current pandemic scenarios.

摘要

传染病的出现有望成为医疗保健领域主要的致死因素之一。尽管市场上有几种药物可供使用,但新发现的携带多重耐药性(MDR)的微生物使现有药物无法有效发挥作用,导致抗生素剂量疗法不断升级,以及开发新药的需求,而这需要时间、金钱和人力。因此,抗菌药物的使用导致了多重耐药菌的产生,其流行和增长是一个主要问题。预防抗菌药物耐药性的新方法正在实践中。基于纳米技术的创新为医生和患者提供了克服耐药性危机的机会。纳米颗粒在医疗保健领域具有广阔的潜力。最近,人们设计出了纳米颗粒来应对病原微生物。许多因各种特性(包括大小、形态、电荷和表面涂层)而异的过程,使研究人员能够开发出用于不同抗菌应用的新型复合抗菌物质。无机和碳基纳米颗粒的抗菌活性未来可应用于各种研究、医学和工业用途,并为传统方法的抗菌耐药性危机提供解决方案。金属基纳米颗粒也已在许多生物医学应用中得到广泛研究。除了尺寸减小和对细菌具有选择性外,根据世界卫生组织(WHO)的说法,金属基纳米颗粒已被证明对列为优先事项的病原体有效。此外,为了研究纳米颗粒的功效,不仅在体外而且在体内都进行了抗菌研究。此外,纳米材料为感染预防、诊断、治疗和生物膜控制提供了众多机会。本研究强调了纳米颗粒的抗菌作用,并对比了纳米颗粒与抗生素在对抗病原微生物方面的作用。未来的前景围绕着开发新的策略和产品,以预防、控制和治疗人类和其他动物的微生物感染,包括当前大流行情况下出现的病毒感染。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26b7/8698349/c1fc4c1aa512/antibiotics-10-01473-g001.jpg

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