金纳米颗粒在病毒学中的新见解:它们在病毒感染的预防、检测和治疗中的应用综述。

Hossein Teimouri, Shiva Taheri, Fatemeh Eivazzadeh Saidabad, Gerson Nakazato, Yazdan Maghsoud, Abouzar Babaei
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引用次数: 0

摘要

病毒感染已导致全世界数百万人死亡,并带来了重大的经济和社会负担。正如2019冠状病毒病(COVID-19)所见证的那样,新出现的病毒感染可深刻影响人类生活的各个方面,因此迫切需要制定诊断、治疗和有效控制战略。许多研究强调了纳米颗粒在诊断、控制、预防和治疗病毒感染方面的不同应用。由于具有良好的物理化学性质和灵活的体积小、免疫原性、生物相容性、高表面体积比以及与抗病毒药物结合的能力,金纳米颗粒在对抗病毒方面显示出巨大的潜力。物理和化学性质,基于应用类型的特性可调节性,穿越血脑屏障的能力,浸润细胞(如吞噬细胞和树突状细胞)的能力,以及与各种化合物络合的兼容性,以及其他特征,将aunp转化为通过多种应用对抗和解决病原病毒制剂的合适工具。近年来,aunp已应用于各种对抗病毒感染的应用中。然而,关于AuNPs在抗病毒感染方面的应用还没有全面的综述文章。鉴于它们的多功能性,aunp提供了一个有吸引力的选择,以解决对抗病毒感染的各种差距。因此,本综述探讨了aunp的属性、抗病毒特性、对药物传递、疫苗开发和诊断用途的贡献。
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New insights into gold nanoparticles in virology: A review of their applications in the prevention, detection, and treatment of viral infections.

Viral infections have led to the deaths of millions worldwide and come with significant economic and social burdens. Emerging viral infections, as witnessed with coronavirus disease 2019 (COVID-19), can profoundly affect all aspects of human life, highlighting the imperative need to develop diagnostic, therapeutic, and effective control strategies in response. Numerous studies highlight the diverse applications of nanoparticles in diagnosing, controlling, preventing, and treating viral infections. Due to favorable and flexible physicochemical properties, small size, immunogenicity, biocompatibility, high surface-to-volume ratio, and the ability to combine with antiviral agents, gold nanoparticles (AuNPs) have shown great potential in the fight against viruses. The physical and chemical properties, the adjustability of characteristics based on the type of application, the ability to cross the blood-brain barrier, the ability to infiltrate cells such as phagocytic and dendritic cells, and compatibility for complexing with various compounds, among other features, transform AuNPs into a suitable tool for combating and addressing pathogenic viral agents through multiple applications. In recent years, AuNPs have been employed in various applications to fight viral infections. However, a comprehensive review article on the applications of AuNPs against viral infections has yet to be available. Given their versatility, AuNPs present an appealing option to address various gaps in combating viral infections. Hence, this review explores the attributes, antiviral properties, contributions to drug delivery, vaccine development, and diagnostic uses of AuNPs.

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