纳米颗粒治疗耐药细菌:目前的方法和前景

Bekele Tigabu, Alamnie Getachew
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引用次数: 7

摘要

耐抗生素细菌是新兴病原体,其耐药概况通过保持其对人类健康的影响而产生严重的健康危机。滥用抗生素导致微生物对目前可获得的药物产生免疫。致病菌通过各种机制产生耐药性,例如;抗生素修饰,靶点改变和生物膜形成,增加了它们在细胞内环境中花费的时间,而抗生素无法在治疗水平上取得成功。因此,人们正在尝试开发新的替代纳米抗生素,作为治疗多药耐药致病细菌的一种有希望的方法。因此,目前有相当多的关注使用纳米颗粒(NPs)作为抗菌剂来对抗不同的病原体,并作为靶向药物递送到特定组织,因此微生物被纳米抗生素的生物杀灭特性所消除。此外,纳米封装系统的使用可以帮助解决毒性问题,以及靶向药物递送问题。本文综述了抗生素耐药的流行、机制,以及纳米颗粒作为抗菌和药物传递系统的应用,以克服细菌的抗生素耐药挑战。总的来说,这篇综述文章提供了一个概念框架来理解抗生素耐药细菌出现的复杂性,甚至是全新的合成抗生素。因此,这些知识的可用性将使研究人员能够提供关于纳米颗粒在治疗多重耐药细菌中的应用的详细研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Treatment of antibiotic-resistant bacteria by nanoparticles: Current approaches and prospects
Antibiotic-resistant bacteria are emerging pathogens whose resistance profiles generate a serious health crisis by holding their impact on human health. Misuse of antibiotics has directed the emergence of microbes immune to presently accessible drugs. Pathogenic bacteria become resistant by employing various mechanisms, such as; antibiotic modification, target site alteration, and biofilm formation, increasing the time they spend in the intracellular environment where antibiotics are unable to succeed at therapeutic levels. Due to this, attempts are being made to develop new alternative nanoantibiotics as a promising approach to treat multidrug resistance disease-causing bacteria. Accordingly, there is considerable contemporary attention to the use of nanoparticles (NPs) as antibacterial agents against different pathogens and as target drug delivery toward specific tissues therefore microbes are eliminated by the biocidal properties of nanoantibiotics. Additionally, the utilization of nanoencapsulation systems can help to beat the issues of, those with toxicity natures, and target drug delivery problems. This review encompasses the antibiotic resistance prevalence, mechanisms, and therefore the use of nanoparticles as antibacterial and drug delivery systems to overcome the antibiotic resistance challenges of bacteria. Overall, this review paper provides a conceptual framework for understanding the complexity of the matter of emergence of antibiotic resistance bacteria even for brand spanking new synthesized antibiotics. Therefore the availability of such knowledge will allow researchers to supply detailed studies about the applications of nanoparticles in the treatment of multidrug-resistant bacteria. 
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