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Correlative ex situ and Liquid-Cell TEM Observation of Bacterial Cell Membrane Damage Induced by Rough Surface Topology.

David James BannerEmre FirlarJustas JakubonisYusuf BaggiaJodi K OsbornReza Shahbazian-YassarConstantine M MegaridisTolou Shokuhfar
Published in: International journal of nanomedicine (2020)
Nanoscale surface roughness may act via a penetrative bactericidal mechanism. This insight suggests that future research may focus on optimizing bacterial binding to individual nanoscale projections in addition to stretching bacteria between nanopillars. Further, antibacterial nanotextures may find use in novel applications employing particles in addition to nanotextures on fibers or films.
Keyphrases
  • atomic force microscopy
  • single cell
  • cell therapy
  • current status
  • silver nanoparticles
  • bone marrow
  • high speed
  • high resolution
  • carbon nanotubes