Detail publikace

Effects Of Different Cold Atmospheric‐Pressure Plasma Sources On The Yeast Candida Glabrata

TREBULOVÁ, K. KRČMA, F. SKOUMALOVÁ, P. KOZÁKOVÁ, Z. MACHALA, Z.

Originální název

Effects Of Different Cold Atmospheric‐Pressure Plasma Sources On The Yeast Candida Glabrata

Typ

článek v časopise ve Web of Science, Jimp

Jazyk

angličtina

Originální abstrakt

Four different cold plasma sources were directly applied onto a 24h inoculum of Candida glabrata inoculated on agar plates, within the limits of in vitro experiment. Their effects were compared and evaluated with respect to the size and stability of the inhibition zones formed in the posttreatment cultivation. The results prove significant inhibitory cold atmospheric-pressure plasma effects on the yeast C. glabrata. The overall inhibitory effects are directly proportional to the treatment time, the applied power, and the overall functioning of the plasma source and indirectly proportional to the initial cell concentration, although this factor was less significant compared to the other examined factors. The unipolar microwave torch was found to be the most effective in the inhibition of C. glabrata.

Klíčová slova

antimicrobial effects, Candida glabrata, CAP, cold plasma, direct treatment

Autoři

TREBULOVÁ, K.; KRČMA, F.; SKOUMALOVÁ, P.; KOZÁKOVÁ, Z.; MACHALA, Z.

Vydáno

4. 12. 2023

Nakladatel

Wiley

ISSN

1612-8850

Periodikum

Plasma Processes and Polymers

Ročník

20

Číslo

12

Stát

Spolková republika Německo

Strany od

1

Strany do

18

Strany počet

18

URL

Plný text v Digitální knihovně

BibTex

@article{BUT185405,
  author="Kristína {Trebulová} and František {Krčma} and Petra {Skoumalová} and Zdenka {Kozáková} and Zdenko {Machala}",
  title="Effects Of Different Cold Atmospheric‐Pressure Plasma Sources On The Yeast Candida Glabrata",
  journal="Plasma Processes and Polymers",
  year="2023",
  volume="20",
  number="12",
  pages="18",
  doi="10.1002/ppap.202300048",
  issn="1612-8850",
  url="https://onlinelibrary.wiley.com/doi/epdf/10.1002/ppap.202300048"
}