Taiwan International Graduate Program in Molecular Medicine, National Yang Ming Chiao Tung University and Academia Sinica, Taipei, 112304, Taiwan.
Institute of Biomedical Sciences, Academia Sinica, Taipei, 115201, Taiwan.
Drug Deliv Transl Res. 2021 Aug;11(4):1420-1437. doi: 10.1007/s13346-021-00965-y. Epub 2021 Mar 21.
The COVID-19 pandemic's high mortality rate and severe socioeconomic impact serve as a reminder of the urgent need for effective countermeasures against viral pandemic threats. In particular, effective antiviral therapeutics capable of stopping infections in its tracks is critical to reducing infection fatality rate and healthcare burden. With the field of drug delivery witnessing tremendous advancement in the last two decades owing to a panoply of nanotechnology advances, the present review summarizes and expounds on the research and development of therapeutic nanoformulations against various infectious viral pathogens, including HIV, influenza, and coronaviruses. Specifically, nanotechnology advances towards improving pathogen- and host-targeted antiviral drug delivery are reviewed, and the prospect of achieving effective viral eradication, broad-spectrum antiviral effect, and resisting viral mutations are discussed. As several COVID-19 antiviral clinical trials are met with lackluster treatment efficacy, nanocarrier strategies aimed at improving drug pharmacokinetics, biodistributions, and synergism are expected to not only contribute to the current disease treatment efforts but also expand the antiviral arsenal against other emerging viral diseases.
COVID-19 大流行的高死亡率和严重的社会经济影响提醒人们,迫切需要采取有效措施应对病毒大流行的威胁。特别是,能够阻止感染的有效抗病毒疗法对于降低感染死亡率和医疗保健负担至关重要。由于过去二十年中纳米技术的广泛进步,药物输送领域取得了巨大进展,本综述总结并阐述了针对各种传染性病毒病原体(包括 HIV、流感和冠状病毒)的治疗纳米制剂的研究和开发。具体而言,综述了纳米技术在提高针对病原体和宿主的抗病毒药物输送方面的进展,并讨论了实现有效病毒清除、广谱抗病毒作用和抵抗病毒突变的前景。由于几项 COVID-19 抗病毒临床试验的治疗效果不佳,预计旨在改善药物药代动力学、生物分布和协同作用的纳米载体策略不仅有助于当前的疾病治疗努力,而且还将扩大针对其他新发病毒性疾病的抗病毒武器库。