Reina Giacomo, Peng Shiyuan, Jacquemin Lucas, Andrade Andrés Felipe, Bianco Alberto
CNRS, Immunology, Immunopathology and Therapeutic Chemistry, UPR 3572, University of Strasbourg ISIS, 67000 Strasbourg, France.
ACS Nano. 2020 Aug 25;14(8):9364-9388. doi: 10.1021/acsnano.0c04117. Epub 2020 Jul 22.
The SARS-Cov-2 pandemic has spread worldwide during 2020, setting up an uncertain start of this decade. The measures to contain infection taken by many governments have been extremely severe by imposing home lockdown and industrial production shutdown, making this the biggest crisis since the second world war. Additionally, the continuous colonization of wild natural lands may touch unknown virus reservoirs, causing the spread of epidemics. Apart from SARS-Cov-2, the recent history has seen the spread of several viral pandemics such as H2N2 and H3N3 flu, HIV, and SARS, while MERS and Ebola viruses are considered still in a prepandemic phase. Hard nanomaterials (HNMs) have been recently used as antimicrobial agents, potentially being next-generation drugs to fight viral infections. HNMs can block infection at early (disinfection, entrance inhibition) and middle (inside the host cells) stages and are also able to mitigate the immune response. This review is focused on the application of HNMs as antiviral agents. In particular, mechanisms of actions, biological outputs, and limitations for each HNM will be systematically presented and analyzed from a material chemistry point-of-view. The antiviral activity will be discussed in the context of the different pandemic viruses. We acknowledge that HNM antiviral research is still at its early stage, however, we believe that this field will rapidly blossom in the next period.
2020年期间,严重急性呼吸综合征冠状病毒2(SARS-CoV-2)大流行在全球蔓延,给这十年的开端带来了不确定性。许多政府采取的感染防控措施极为严厉,实施居家封锁和工业生产停工,使之成为第二次世界大战以来最大的危机。此外,对野生自然土地的持续开垦可能触及未知的病毒库,导致疫情传播。除了SARS-CoV-2,近期历史上还出现了几起病毒性大流行,如H2N2和H3N3流感、艾滋病毒和严重急性呼吸综合征(SARS),而中东呼吸综合征(MERS)和埃博拉病毒仍被认为处于大流行前阶段。硬纳米材料(HNMs)最近已被用作抗菌剂,有望成为对抗病毒感染的下一代药物。HNMs可以在早期(消毒、入口抑制)和中期(宿主细胞内部)阶段阻断感染,还能够减轻免疫反应。本综述聚焦于HNMs作为抗病毒剂的应用。特别是,将从材料化学的角度系统地介绍和分析每种HNMs的作用机制(MOAs)、生物学效应及局限性。将在不同大流行病毒的背景下讨论抗病毒活性。我们承认HNMs抗病毒研究仍处于早期阶段,然而,我们相信该领域将在未来迅速蓬勃发展。