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Abrogation of pathogenic attributes in drug resistant Candida auris strains by farnesol

Vartika Srivastava, View ORCID ProfileAijaz Ahmad
doi: https://doi.org/10.1101/792168
Vartika Srivastava
Clinical Microbiology and Infectious Diseases, School of Pathology, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, 2193, South Africa
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Aijaz Ahmad
Clinical Microbiology and Infectious Diseases, School of Pathology, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, 2193, South AfricaInfection Control, Charlotte Maxeke Johannesburg Academic Hospital, National Health Laboratory Service, Johannesburg, 2193, South Africa
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  • For correspondence: Aijaz.Ahmad@wits.ac.za Aijaz.Ahmad@nhls.ac.za
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Abstract

Candida auris, a decade old Candida species, has been identified globally as a significant nosocomial multidrug resistant (MDR) pathogen responsible for causing invasive outbreaks. Biofilms and overexpression of efflux pumps such as Major Facilitator Superfamily and ATP Binding Cassette are known to cause multidrug resistance in Candida species, including C. auris. Therefore, targeting these factors may prove an effective approach to combat MDR in C. auris. In this study, 25 clinical isolates of C. auris from different hospitals of South Africa were used. All the isolates were found capable enough to form biofilms on 96-well microtiter plate that was further confirmed by MTT reduction assay. In addition, these strains have active drug efflux mechanism which was supported by rhodamine-6-G extracellular efflux and intracellular accumulation assays. Antifungal susceptibility profile of all the isolates against commonly used drugs was determined following CLSI recommended guidelines. We further studied the role of farnesol, an endogenous quorum sensing molecule, in modulating development of biofilms and drug efflux in C. auris. The MIC for planktonic cells ranged from 62.5-125 mM and for sessile cells was 125 mM (0 h and 4 h biofilm) and 500 mM (12 h and 24 h biofilm). Farnesol inhibited biofilm formation, blocked efflux pumps and downregulated biofilm- and efflux pump-associated genes. Modulation of C. auris biofilm formation and efflux pump activity by farnesol represent a promising approach for controlling life threatening infections caused by this pathogen.

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Posted October 04, 2019.
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Abrogation of pathogenic attributes in drug resistant Candida auris strains by farnesol
Vartika Srivastava, Aijaz Ahmad
bioRxiv 792168; doi: https://doi.org/10.1101/792168
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Abrogation of pathogenic attributes in drug resistant Candida auris strains by farnesol
Vartika Srivastava, Aijaz Ahmad
bioRxiv 792168; doi: https://doi.org/10.1101/792168

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