Abstract <p>The rate of wound healing on white laboratory mice BALB/C was assessed after application of antibacterial copper nanoparticles with a surface mass density of ≈30 μg/cm<sup>2</sup> by laser-induced forward transfer from a 100-nm thick copper film. For comparison, a group of mice with untreated wounds was used as a control group. As a result, copper nanoparticles were shown to have a wound-healing effect without causing harm to the mice themselves.</p>

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In-Vivo Studies of Wound Healing Properties of Antibacterial Copper Nanoparticles

  • A. A. Nastulyavichus,
  • E. R. Tolordava,
  • E. V. Ulturgasheva,
  • S. N. Shelygina,
  • S. P. Babina,
  • I. N. Saraeva,
  • S. I. Kudryashov

摘要

Abstract

The rate of wound healing on white laboratory mice BALB/C was assessed after application of antibacterial copper nanoparticles with a surface mass density of ≈30 μg/cm2 by laser-induced forward transfer from a 100-nm thick copper film. For comparison, a group of mice with untreated wounds was used as a control group. As a result, copper nanoparticles were shown to have a wound-healing effect without causing harm to the mice themselves.