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Small-Scale Plasma Membrane Preparation for the Analysis of Candida albicans Cdr1-mGFPHis
Published on: June 13, 2021
Transcriptome analysis of Candida albicans planktonic cells in response to plasma medicine
Xinhua Zhang1,2,3, Kok Jun Liew4, Li Cao5
1School of Photoelectric Engineering, Changzhou Institute of Technology, Changzhou 213028, PR China.
Abstract:
Introduction. Cold plasma is frequently utilized for the purpose of eliminating microbial contaminants. Under optimal conditions, it can function as plasma medicine for treating various diseases, including infections caused by Candida albicans, an opportunistic pathogen that can overgrow in individuals with weakened immune system.Gap Statement. To date, there has been less molecular study on cold plasma-treated C. albicans.Research Aim. The study aims to fill the gap in understanding the molecular response of C. albicans to cold plasma treatment.Methodology. This project involved testing a cold plasma generator to determine its antimicrobial effectiveness on C. albicans' planktonic cells. Additionally, the cells' transcriptomics responses were investigated using RNA sequencing at various treatment durations (1, 3 and 5 min).Results. The results show that our cold plasma effectively eliminates C. albicans. Cold plasma treatment resulted in substantial downregulation of important pathways, such as 'nucleotide metabolism', 'DNA replication and repair', 'cell growth', 'carbohydrate metabolism' and 'amino acid metabolism'. This was an indication of cell cycle arrest of C. albicans to preserve energy consumption under unfavourable conditions. Nevertheless, C. albicans adapted its GSH antioxidant system to cope with the oxidative stress induced by reactive oxygen species, reactive nitrogen species and other free radicals. The treatment likely led to a decrease in cell pathogenicity as many virulence factors were downregulated.Conclusion. The study demonstrated the major affected pathways in cold plasma-treated C. albicans, providing valuable insights into the molecular response of C. albicans to cold plasma treatment. The findings contribute to the understanding of the antimicrobial efficiency of cold plasma and its potential applications in the field of microbiology.
Insights
Cold plasma effectively eliminates Candida albicans by arresting its cell cycle and downregulating key metabolic pathways. This study reveals molecular insights into cold plasma
Area of Science:
- Microbiology
- Plasma Medicine
- Molecular Biology
Background:
- Cold plasma is a promising tool for microbial decontamination.
- Candida albicans is an opportunistic pathogen causing infections in immunocompromised individuals.
- Limited molecular studies exist on cold plasma's effect on C. albicans.
Purpose of the Study:
- To investigate the molecular response of C. albicans to cold plasma treatment.
- To understand the antimicrobial mechanisms of cold plasma against C. albicans.
Main Methods:
- Antimicrobial effectiveness of a cold plasma generator on planktonic C. albicans was tested.
- RNA sequencing was used to analyze transcriptomic changes at 1, 3, and 5 minutes of treatment.
Main Results:
- Cold plasma effectively eliminated C. albicans.
- Significant downregulation of nucleotide metabolism, DNA replication, cell growth, and amino acid metabolism pathways observed, indicating cell cycle arrest.
- C. albicans adapted its antioxidant system (GSH) to cope with oxidative stress.
- Downregulation of virulence factors suggests reduced pathogenicity.
Conclusions:
- Cold plasma significantly impacts key molecular pathways in C. albicans.
- Findings provide insights into the antimicrobial action of cold plasma.
- This research supports the potential of cold plasma in microbiology and infection control.
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