Detail publikačního výsledku

Cold microwave plasma jets for wound healing: antimicrobial efficacy, mechanisms and changes in microbial cells

TREBULOVÁ, K.; LOUPOVÁ, V.; CHOBOTSKÁ, B.; KLETZANDER, L.; MENČÍK, P.; KOZÁKOVÁ, Z.; HRUDKA, J.; PAWLAT, J.; KULICH, P.; KRČMA, F.

Originální název

Cold microwave plasma jets for wound healing: antimicrobial efficacy, mechanisms and changes in microbial cells

Anglický název

Cold microwave plasma jets for wound healing: antimicrobial efficacy, mechanisms and changes in microbial cells

Druh

Článek WoS

Originální abstrakt

Given the increasing prevalence of antibiotic-resistant microorganisms, alternative disinfection strategies are required. This study explores the antimicrobial potential of cold atmospheric plasma (CAP) as a non-thermal decontamination method for medical applications. The results confirm the efficacy of cold microwave plasma jets in the inactivation of Staphylococcus epidermidis, Escherichia coli, Cutibacterium acnes, and Nakaseomyces glabratus. Optimal treatment conditions ensuring both the antimicrobial efficacy and the safety for living tissue were established. Experiments in enclosed or open-air environment and the use of colorimetric agents confirmed that RONS, rather than UV radiation, are primarily responsible for microbial inactivation. Possible inhibition mechanisms induced by the CAP treatment were examined using scanning (SEM) and transmission (TEM) electron microscopy. The analyses revealed progressive morphological and intracellular changes in yeast cells following the plasma treatment, including localized thinning and perforation of the cell wall, vacuole enlargement, enhanced vesicle formation, protoplast aggregation and leakage of intracellular content.

Anglický abstrakt

Given the increasing prevalence of antibiotic-resistant microorganisms, alternative disinfection strategies are required. This study explores the antimicrobial potential of cold atmospheric plasma (CAP) as a non-thermal decontamination method for medical applications. The results confirm the efficacy of cold microwave plasma jets in the inactivation of Staphylococcus epidermidis, Escherichia coli, Cutibacterium acnes, and Nakaseomyces glabratus. Optimal treatment conditions ensuring both the antimicrobial efficacy and the safety for living tissue were established. Experiments in enclosed or open-air environment and the use of colorimetric agents confirmed that RONS, rather than UV radiation, are primarily responsible for microbial inactivation. Possible inhibition mechanisms induced by the CAP treatment were examined using scanning (SEM) and transmission (TEM) electron microscopy. The analyses revealed progressive morphological and intracellular changes in yeast cells following the plasma treatment, including localized thinning and perforation of the cell wall, vacuole enlargement, enhanced vesicle formation, protoplast aggregation and leakage of intracellular content.

Klíčová slova

Plasma medicine;Oxidative stress response;RONS mapping;Plasma‑cell interaction;Electron microscopy

Klíčová slova v angličtině

Plasma medicine;Oxidative stress response;RONS mapping;Plasma‑cell interaction;Electron microscopy

Autoři

TREBULOVÁ, K.; LOUPOVÁ, V.; CHOBOTSKÁ, B.; KLETZANDER, L.; MENČÍK, P.; KOZÁKOVÁ, Z.; HRUDKA, J.; PAWLAT, J.; KULICH, P.; KRČMA, F.

Vydáno

06.03.2026

Nakladatel

Springer Nature

Periodikum

Scientific Reports

Svazek

16

Číslo

1

Stát

Spojené království Velké Británie a Severního Irska

Strany od

1

Strany do

17

Strany počet

17

URL

Plný text v Digitální knihovně

BibTex

@article{BUT201861,
  author="{} and Kristína Eyma {Doležel} and Veronika {Loupová} and  {} and Barbora {Chobotská} and  {} and  {} and Lukáš {Kletzander} and Přemysl {Menčík} and  {} and Zdenka {Kozáková} and  {} and  {} and  {} and František {Krčma}",
  title="Cold microwave plasma jets for wound healing: antimicrobial efficacy, mechanisms and changes in microbial cells",
  journal="Scientific Reports",
  year="2026",
  volume="16",
  number="1",
  pages="17",
  doi="10.1038/s41598-026-42650-5",
  issn="2045-2322",
  url="https://www.nature.com/articles/s41598-026-42650-5"
}