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纳米技术在对抗生物膜方面:一种智能且有前景的治疗策略。

Nanotechnology in combating biofilm: A smart and promising therapeutic strategy.

作者信息

Mohanta Yugal Kishore, Chakrabartty Ishani, Mishra Awdhesh Kumar, Chopra Hitesh, Mahanta Saurov, Avula Satya Kumar, Patowary Kaustuvmani, Ahmed Ramzan, Mishra Bibhudutta, Mohanta Tapan Kumar, Saravanan Muthupandian, Sharma Nanaocha

机构信息

Department of Applied Biology, School of Biological Sciences, University of Science and Technology Meghalaya (USTM), Techno City, Meghalaya, India.

Indegene Pvt. Ltd., Manyata Tech Park, Bangalore, India.

出版信息

Front Microbiol. 2023 Mar 3;13:1028086. doi: 10.3389/fmicb.2022.1028086. eCollection 2022.

Abstract

Since the birth of civilization, people have recognized that infectious microbes cause serious and often fatal diseases in humans. One of the most dangerous characteristics of microorganisms is their propensity to form biofilms. It is linked to the development of long-lasting infections and more severe illness. An obstacle to eliminating such intricate structures is their resistance to the drugs now utilized in clinical practice (biofilms). Finding new compounds with anti-biofilm effect is, thus, essential. Infections caused by bacterial biofilms are something that nanotechnology has lately shown promise in treating. More and more studies are being conducted to determine whether nanoparticles (NPs) are useful in the fight against bacterial infections. While there have been a small number of clinical trials, there have been several outcomes examining the effects of antimicrobial NPs. Nanotechnology provides secure delivery platforms for targeted treatments to combat the wide range of microbial infections caused by biofilms. The increase in pharmaceuticals' bioactive potential is one of the many ways in which nanotechnology has been applied to drug delivery. The current research details the utilization of several nanoparticles in the targeted medication delivery strategy for managing microbial biofilms, including metal and metal oxide nanoparticles, liposomes, micro-, and nanoemulsions, solid lipid nanoparticles, and polymeric nanoparticles. Our understanding of how these nanosystems aid in the fight against biofilms has been expanded through their use.

摘要

自文明诞生以来,人们就认识到传染性微生物会在人类身上引发严重且往往致命的疾病。微生物最危险的特征之一是它们易于形成生物膜。这与持续性感染和更严重疾病的发展有关。消除这种复杂结构的一个障碍是它们对目前临床实践中使用的药物(生物膜)具有抗性。因此,寻找具有抗生物膜作用的新化合物至关重要。由细菌生物膜引起的感染是纳米技术最近在治疗方面显示出前景的领域。越来越多的研究正在进行,以确定纳米颗粒(NPs)在对抗细菌感染方面是否有用。虽然已经有少数临床试验,但已经有一些研究结果检验了抗菌纳米颗粒的效果。纳米技术为靶向治疗提供了安全的递送平台,以对抗由生物膜引起的广泛微生物感染。提高药物的生物活性潜力是纳米技术应用于药物递送的众多方式之一。当前的研究详细介绍了几种纳米颗粒在用于管理微生物生物膜的靶向药物递送策略中的应用,包括金属和金属氧化物纳米颗粒、脂质体、微乳液和纳米乳液、固体脂质纳米颗粒以及聚合物纳米颗粒。通过使用这些纳米系统,我们对它们如何帮助对抗生物膜的理解得到了扩展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80d1/10020670/2069fd378b08/fmicb-13-1028086-g001.jpg

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