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Article

A New Convenient Method to Assess Antibiotic Resistance and Antimicrobial Efficacy against Pathogenic Clostridioides difficile Biofilms

by
Lingjun Xu
1,
Bijay Gurung
2,
Chris Gu
2,
Shaohua Wang
2,3,* and
Tingyue Gu
1,*
1
Department of Chemical & Biomolecular Engineering, Edison Biotechnology Institute, Ohio University, Athens, OH 45701, USA
2
Department of Biomedical Sciences, Ohio University Heritage College of Osteopathic Medicine, Ohio University, Athens, OH 45071, USA
3
Infectious and Tropical Disease Institute, Ohio University, Athens, OH 45071, USA
*
Authors to whom correspondence should be addressed.
Antibiotics 2024, 13(8), 728; https://doi.org/10.3390/antibiotics13080728
Submission received: 30 June 2024 / Revised: 31 July 2024 / Accepted: 1 August 2024 / Published: 3 August 2024

Abstract

Clostridioides difficile is a widely distributed anaerobic pathogen. C. difficile infection is a serious problem in healthcare. Its biofilms have been found to exhibit biocorrosivity, albeit very little, but sufficient for it to correlate with biofilm growth/health. This work demonstrated the use of a disposable electrochemical biofilm test kit using two solid-state electrodes (a 304 stainless steel working electrode, and a graphite counter electrode, which also served as the reference electrode) in a 10 mL serum vial. It was found that the C. difficile 630∆erm Adp-4 mutant had a minimum inhibitory concentration (MIC) for vancomycin twice that of the 630∆erm wild type strain in biofilm prevention (2 ppm vs. 1 ppm by mass) on 304 stainless steel. Glutaraldehyde, a commonly used hospital disinfectant, was found ineffective at 2% (w/w) for the prevention of C. difficile 630∆erm wild type biofilm formation, while tetrakis(hydroxymethyl)phosphonium sulfate (THPS) disinfectant was very effective at 100 ppm for both biofilm prevention and biofilm killing. These antimicrobial efficacy data were consistent with sessile cell count and biofilm imaging results. Furthermore, the test kit provided additional transient biocide treatment information. It showed that vancomycin killed C. difficile 630∆erm wild type biofilms in 2 d, while THPS only required minutes.
Keywords: Clostridioides difficile; biocorrosion; antimicrobial; electrochemical test kit; biofilm prevention; biofilm kill Clostridioides difficile; biocorrosion; antimicrobial; electrochemical test kit; biofilm prevention; biofilm kill

Share and Cite

MDPI and ACS Style

Xu, L.; Gurung, B.; Gu, C.; Wang, S.; Gu, T. A New Convenient Method to Assess Antibiotic Resistance and Antimicrobial Efficacy against Pathogenic Clostridioides difficile Biofilms. Antibiotics 2024, 13, 728. https://doi.org/10.3390/antibiotics13080728

AMA Style

Xu L, Gurung B, Gu C, Wang S, Gu T. A New Convenient Method to Assess Antibiotic Resistance and Antimicrobial Efficacy against Pathogenic Clostridioides difficile Biofilms. Antibiotics. 2024; 13(8):728. https://doi.org/10.3390/antibiotics13080728

Chicago/Turabian Style

Xu, Lingjun, Bijay Gurung, Chris Gu, Shaohua Wang, and Tingyue Gu. 2024. "A New Convenient Method to Assess Antibiotic Resistance and Antimicrobial Efficacy against Pathogenic Clostridioides difficile Biofilms" Antibiotics 13, no. 8: 728. https://doi.org/10.3390/antibiotics13080728

APA Style

Xu, L., Gurung, B., Gu, C., Wang, S., & Gu, T. (2024). A New Convenient Method to Assess Antibiotic Resistance and Antimicrobial Efficacy against Pathogenic Clostridioides difficile Biofilms. Antibiotics, 13(8), 728. https://doi.org/10.3390/antibiotics13080728

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