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Probing and pressing surfaces of hepatitis C virus-like particles.

Abstract
Hepatitis C virus-like particles (VLPs) are being developed as a quadrivalent vaccine candidate, eliciting both humoral and cellular immune responses in animal trials. Biophysical, biomechanical and biochemical properties are important for virus and VLP interactions with host cells and recognition by the immune system. Atomic force microscopy (AFM) is a powerful tool for visualizing surface topographies of cells, bionanoparticles and biomolecules, and for determining biophysical and biomechanical attributes such as size and elasticity. In this work, AFM was used to define morphological and nanomechanical properties of VLPs representing four common genotypes of hepatitis C virus. Significant differences in size of the VLPs were observed, and particles demonstrated a wide range of elasticity. Ordered packing of the core and potentially envelope glycoproteins was observed on the surfaces of the VLPs, but detailed structural characterization was hindered due to intrinsic dynamic fluctuations or AFM probe-induced damage of the VLPs. All VLPs were shown to be glycosylated in a manner similar to native viral particles. Together, the results presented in this study further our understanding of the nanostructure of hepatitis C VLPs, and should influence their uptake as viable vaccine candidates.
AuthorsSimon Collett, Joseph Torresi, Linda Earnest-Silveira, Dale Christiansen, Aaron Elbourne, Paul A Ramsland
JournalJournal of colloid and interface science (J Colloid Interface Sci) Vol. 545 Pg. 259-268 (Jun 01 2019) ISSN: 1095-7103 [Electronic] United States
PMID30897421 (Publication Type: Journal Article)
CopyrightCopyright © 2019 Elsevier Inc. All rights reserved.
Chemical References
  • Carrier Proteins
  • Lectins
  • Viral Envelope Proteins
  • Viral Hepatitis Vaccines
  • envelope H3L protein, Vaccinia virus
Topics
  • Biological Transport
  • Carrier Proteins (metabolism)
  • Cell Line
  • Elasticity
  • Genotype
  • Hepacivirus (metabolism)
  • Humans
  • Lectins (chemistry, metabolism)
  • Microscopy, Atomic Force (methods)
  • Nanoparticles (chemistry, metabolism)
  • Particle Size
  • Surface Properties
  • Viral Envelope Proteins (metabolism)
  • Viral Hepatitis Vaccines (chemistry, metabolism)
  • Virion (chemistry, metabolism)

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