4.7 Article

Virostatic potential of micro-nano filopodia-like ZnO structures against herpes simplex virus-1

期刊

ANTIVIRAL RESEARCH
卷 92, 期 2, 页码 305-312

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.antiviral.2011.08.017

关键词

Zinc oxide structures; Herpes simplex virus type-1 (HSV-1); Virus-cell interaction

资金

  1. DFG [SFB 855 TP A5]
  2. Alexander von Humboldt Foundation
  3. Cluster of Excellence Inflammation at Interfaces
  4. Western University of Health Sciences (WUHS) [N12587]
  5. NIH [1R15AI088429-01A1]

向作者/读者索取更多资源

Herpes simplex virus type-1 (HSV-1) entry into target cell is initiated by the ionic interactions between positively charged viral envelop glycoproteins and a negatively charged cell surface heparan sulfate (HS). This first step involves the induction of HS-rich filopodia-like structures on the cell surface that facilitate viral transport during cell entry. Targeting this initial first step in HSV-1 pathogenesis, we generated different zinc oxide (ZnO) micro-nano structures (MNSs) that were capped with multiple nanoscopic spikes mimicking cell induced filopodia. These MNSs were predicted to target the virus to compete for its binding to cellular HS through their partially negatively charged oxygen vacancies on their nanoscopic spikes, to affect viral entry and subsequent spread. Our results demonstrate that the partially negatively charged ZnO-MNSs efficiently trap the virions via a novel virostatic mechanism rendering them unable to enter into human corneal fibroblasts - a natural target cell for HSV-1 infection. The anti-HSV-1 activity of ZnO MNSs was drastically enhanced after creating additional oxygen vacancies under UV-light illumination. Our results provide a novel insight into the significance of ZnO MNSs as the potent HSV-1 inhibitor and rationalize their development as a novel topical agent for the prevention of HSV-1 infection. (C) 2011 Elsevier B.V. All rights reserved.

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