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基于纳米技术的抗病毒疗法。

Nanotechnology-based antiviral therapeutics.

机构信息

Shobhaben Pratapbhai Patel School of Pharmacy and Technology Management, SVKM's NMIMS, V. L. Mehta Road, Vile Parle (W), Mumbai, 400056, India.

出版信息

Drug Deliv Transl Res. 2021 Jun;11(3):748-787. doi: 10.1007/s13346-020-00818-0.

Abstract

The host immune system is highly compromised in case of viral infections and relapses are very common. The capacity of the virus to destroy the host cell by liberating its own DNA or RNA and replicating inside the host cell poses challenges in the development of antiviral therapeutics. In recent years, many new technologies have been explored for diagnosis, prevention, and treatment of viral infections. Nanotechnology has emerged as one of the most promising technologies on account of its ability to deal with viral diseases in an effective manner, addressing the limitations of traditional antiviral medicines. It has not only helped us to overcome problems related to solubility and toxicity of drugs, but also imparted unique properties to drugs, which in turn has increased their potency and selectivity toward viral cells against the host cells. The initial part of the paper focuses on some important proteins of influenza, Ebola, HIV, herpes, Zika, dengue, and corona virus and those of the host cells important for their entry and replication into the host cells. This is followed by different types of nanomaterials which have served as delivery vehicles for the antiviral drugs. It includes various lipid-based, polymer-based, lipid-polymer hybrid-based, carbon-based, inorganic metal-based, surface-modified, and stimuli-sensitive nanomaterials and their application in antiviral therapeutics. The authors also highlight newer promising treatment approaches like nanotraps, nanorobots, nanobubbles, nanofibers, nanodiamonds, nanovaccines, and mathematical modeling for the future. The paper has been updated with the recent developments in nanotechnology-based approaches in view of the ongoing pandemic of COVID-19.Graphical abstract.

摘要

在病毒感染的情况下,宿主免疫系统受到严重损害,复发非常常见。病毒通过释放自身的 DNA 或 RNA 并在宿主细胞内复制来破坏宿主细胞的能力给抗病毒治疗药物的开发带来了挑战。近年来,许多新技术已经被探索用于病毒感染的诊断、预防和治疗。纳米技术因其能够有效地应对病毒疾病、解决传统抗病毒药物的局限性而成为最有前途的技术之一。它不仅帮助我们克服了与药物的溶解度和毒性有关的问题,而且还赋予了药物独特的性质,从而提高了它们对病毒细胞的效力和选择性,而对宿主细胞的毒性较低。本文的前半部分重点介绍了流感、埃博拉、艾滋病毒、疱疹、寨卡、登革热和冠状病毒的一些重要蛋白质以及宿主细胞中对它们进入和复制到宿主细胞很重要的蛋白质。接下来介绍了不同类型的纳米材料,它们已被用作抗病毒药物的递送载体。其中包括各种基于脂质、聚合物、脂质-聚合物杂化、基于碳的、无机金属的、表面修饰的和刺激敏感的纳米材料,以及它们在抗病毒治疗中的应用。作者还强调了一些更新的有前途的治疗方法,如纳米陷阱、纳米机器人、纳米气泡、纳米纤维、纳米金刚石、纳米疫苗和数学建模,以备将来使用。鉴于 COVID-19 的持续大流行,本文根据纳米技术方法的最新进展进行了更新。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4b6/7398286/60133cfb8ae6/13346_2020_818_Fig1_HTML.jpg

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