纳米结构
病毒
纳米颗粒
生物物理学
纳米技术
糖蛋白
膜
甲型流感病毒
材料科学
化学
生物
病毒学
生物化学
作者
Chuanxiong Nie,Marlena Stadtmüller,Hua Yang,Yi Xia,Thorsten Wolff,Chong Cheng,Rainer Haag
出处
期刊:Nano Letters
[American Chemical Society]
日期:2020-06-09
卷期号:20 (7): 5367-5375
被引量:55
标识
DOI:10.1021/acs.nanolett.0c01723
摘要
Geometry-matching has been known to benefit the formation of stable biological interactions in natural systems. Herein, we report that the spiky nanostructures with matched topography to the influenza A virus (IAV) virions could be used to design next-generation advanced virus inhibitors. We demonstrated that nanostructures with spikes between 5 and 10 nm bind significantly better to virions than smooth nanoparticles, due to the short spikes inserting into the gaps of glycoproteins of the IAV virion. Furthermore, an erythrocyte membrane (EM) was coated to target the IAV, and the obtained EM-coated nanostructures could efficiently prevent IAV virion binding to the cells and inhibit subsequent infection. In a postinfection study, the EM-coated nanostructures reduced >99.9% virus replication at the cellular nontoxic dosage. We predict that such a combination of geometry-matching topography and cellular membrane coating will also push forward the development of nanoinhibitors for other virus strains, including SARS-CoV-2.
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