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Exploring the Biology, Virulence, and General Aspects of

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Publisher Dove Medical Press
Date 2024 Dec 26
PMID 39722735
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Abstract

Fungal infections have become a growing public health concern, aggravated by the emergence of new pathogenic species and increasing resistance to antifungal drugs. The most common candidiasis is caused by ; however, has become an emerging opportunistic pathogen, and although less prevalent, it can cause superficial and systemic infections, especially in immunocompromised individuals. This yeast can colonize the oral cavity, skin, and other tissues, and has been associated with oral infections in patients with human immunodeficiency virus (HIV) and acquired immunodeficiency syndrome (AIDS), making it difficult to treat. The special interest in the study of this species lies in its ability to evade commonly used antifungal drugs, such as fluconazole, under different concentrations. In addition, it is difficult to identify because it can be confused with the species , which could interfere with adequate treatment. Although the study of virulence factors in is limited, proteomic comparisons with indicate that these virulence factors could be similar between the two species. However, differences could exist considering the evolutionary processes and lifestyle of each species. In this study, a detailed review of the current literature on was conducted, considering aspects such as biology, possible virulence factors, immune response, pathogen-host interaction, diagnosis, and treatment.

References
1.
Hazen K, Wu J, MASUOKA J . Comparison of the hydrophobic properties of Candida albicans and Candida dubliniensis. Infect Immun. 2001; 69(2):779-86. PMC: 97952. DOI: 10.1128/IAI.69.2.779-786.2001. View

2.
Metzler K, Fuchs T, Nauseef W, Reumaux D, Roesler J, Schulze I . Myeloperoxidase is required for neutrophil extracellular trap formation: implications for innate immunity. Blood. 2010; 117(3):953-9. PMC: 3035083. DOI: 10.1182/blood-2010-06-290171. View

3.
Odds F, Van Nuffel L, Dams G . Prevalence of Candida dubliniensis isolates in a yeast stock collection. J Clin Microbiol. 1998; 36(10):2869-73. PMC: 105079. DOI: 10.1128/JCM.36.10.2869-2873.1998. View

4.
Kirkpatrick W, Lopez-Ribot J, McAtee R, Patterson T . Growth competition between Candida dubliniensis and Candida albicans under broth and biofilm growing conditions. J Clin Microbiol. 2000; 38(2):902-4. PMC: 86241. DOI: 10.1128/JCM.38.2.902-904.2000. View

5.
Oh S, Isenhower A, Rodriguez-Bobadilla R, Smith B, Jones J, Hubka V . Pursuing Advances in DNA Sequencing Technology to Solve a Complex Genomic Jigsaw Puzzle: The Agglutinin-Like Sequence () Genes of . Front Microbiol. 2021; 11:594531. PMC: 7856822. DOI: 10.3389/fmicb.2020.594531. View