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Whole Genome Sequencing of Candida glabrata for Detection of Markers of Antifungal Drug Resistance
Published on: December 28, 2017
Phenotypic and Genotypic Characterization of Candida parapsilosis complex isolates from a Lebanese Hospital
Reine El Hady1, Nour Fattouh2, Marc Finianos3
1Lebanese American University - Byblos Campus.
Abstract:
The opportunistic fungal pathogen Candida parapsilosis is a major causative agent of candidiasis leading to death in immunocompromised individuals. Azoles are the first line of defense in treatment by inhibiting ERG11, involved in the synthesis of ergosterol, the main sterol fungal sterol. Resistance to azoles is on the increase worldwide including in Lebanon. The purpose of this study is to characterize nine hospital isolates labeled as C. parapsilosis: four resistant and five sensitive to fluconazole. Phenotypic characterization was achieved through a battery of tests that target pathogenicity attributes such as virulence, biofilm formation, stress resistance, and ergosterol content. Genotypic analysis was done through whole genome sequencing to mutations in key virulence and resistance genes. Phylogenetic comparison was performed to determine strain relatedness and clonality. Genomic data and phylogenetic analysis revealed that three of the nine C. parapsilosis isolates were misidentified; two as C. orthopsilosis and C. metapsilosis belonging to the C. parapsilosis complex, while the third was C. albicans. Moreover, several known and novel mutations in key drug resistance and virulence genes were identified such as ERG11, ERG3, ERG6, CDR1, and FAS2. Phylogenetic analysis revealed a high degree of relatedness and clonality within our C. parapsilosis isolates. Our results showed that resistant isolates had no increased ergosterol content, no statistically significant difference in virulence, but exhibited an increase in biofilm content compared to the sensitive isolates. In conclusion, our study, the first of its kind in Lebanon, suggests several mechanisms of antifungal drug resistance in C. parapsilosis hospital isolates.
Insights
This study investigated antifungal resistance in Candida parapsilosis hospital isolates. Resistant strains showed increased biofilm formation, not higher ergosterol levels, suggesting novel resistance mechanisms.
Area of Science:
- Medical Mycology
- Antimicrobial Resistance
- Genomics
Background:
- Candida parapsilosis is an opportunistic fungal pathogen causing candidiasis, especially in immunocompromised patients.
- Azole antifungals, targeting ERG11, are first-line treatments, but resistance is a growing global concern.
- This study addresses the increasing azole resistance in Lebanon.
Purpose of the Study:
- To characterize nine hospital isolates of Candida parapsilosis, including fluconazole-resistant and sensitive strains.
- To investigate phenotypic traits related to pathogenicity and genotypic mutations in virulence and resistance genes.
- To perform phylogenetic analysis for strain relatedness and clonality.
Main Methods:
- Phenotypic characterization: virulence, biofilm formation, stress resistance, ergosterol content.
- Genotypic analysis: whole genome sequencing of key virulence and resistance genes.
- Phylogenetic comparison: determining strain relatedness and clonality.
Main Results:
- Three of nine isolates were misidentified: two as other species within the C. parapsilosis complex and one as Candida albicans.
- Identified known and novel mutations in genes like ERG11, ERG3, ERG6, CDR1, and FAS2.
- Resistant isolates showed increased biofilm formation but not higher ergosterol content or significant virulence differences compared to sensitive isolates.
Conclusions:
- The study identified potential mechanisms of antifungal drug resistance in C. parapsilosis hospital isolates.
- Increased biofilm formation is a key characteristic of azole-resistant strains.
- This research provides crucial insights into antifungal resistance in Lebanon, the first study of its kind in the region.
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