耐药时代纳米颗粒的抗菌特性:从机理到应用。

IF 0.7 Q4 MEDICINE, RESEARCH & EXPERIMENTAL
Advanced biomedical research Pub Date : 2024-11-30 eCollection Date: 2024-01-01 DOI:10.4103/abr.abr_92_24
Hamed Salmani-Zarchi, Seyyed Mohammad Amin Mousavi-Sagharchi, Nafise Sepahdoost, Mahdieh Ranjbar-Jamalabadi, Jeffrey D Gross, Hossein Jooya, Ali Samadi
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引用次数: 0

摘要

纳米科学的发展使我们能够为更好的生活定义和设计新的方法和材料。健康和疾病预防是人类一生的主要问题。一些纳米颗粒(NPs)具有抗菌特性,这使得它们在许多应用中都很有用。近年来,NPs已被用作克服耐药性的抗生素或具有抗菌特性的药物载体。它们还可以作为不同身体部位植入物的抗菌涂层。NPs的抗菌特性基于不同的机制。例如,NPs的氧化功能可以抑制核酸复制,破坏微生物细胞膜,干扰其细胞功能和生化循环。另一方面,NPs可以通过中断病原体生命的关键点来破坏病原体的生命周期,例如病毒脱壳和进入人体细胞。为了这些目的,不同的科学家已经测试了许多类型的NPs。银、金、铜和钛显示出抑制和清除体内和体外病原体的能力最强。在这篇综述中,作者试图全面描述NPs的抗菌特性及其在不同生物医学目标中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antimicrobial Feature of Nanoparticles in the Antibiotic Resistance Era: From Mechanism to Application.

The growth of nanoscale sciences enables us to define and design new methods and materials for a better life. Health and disease prevention are the main issues in the human lifespan. Some nanoparticles (NPs) have antimicrobial properties that make them useful in many applications. In recent years, NPs have been used as antibiotics to overcome drug resistance or as drug carriers with antimicrobial features. They can also serve as antimicrobial coatings for implants in different body areas. The antimicrobial feature of NPs is based on different mechanisms. For example, the oxidative functions of NPs can inhibit nucleic acid replication and destroy the microbial cell membrane as well as interfere with their cellular functions and biochemical cycles. On the other hand, NPs can disrupt the pathogens' lifecycle by interrupting vital points of their life, such as virus uncoating and entry into human cells. Many types of NPs have been tested by different scientists for these purposes. Silver, gold, copper, and titanium have shown the most ability to inhibit and remove pathogens inside and outside the body. In this review, the authors endeavor to comprehensively describe the antimicrobial features of NPs and their applications for different biomedical goals.

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