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Cross-kingdom interactions:<i>Candida albicans</i>and bacteria

FEMS Microbiology Letters · 2009 · Vol. 299(1) · pp. 1–8
Mark E. ShirtliffBrian M. PetersMary Ann Jabra‐Rizk

Abstract

Bacteria and fungi are found together in a myriad of environments and particularly in a biofilm, where adherent species interact through diverse signaling mechanisms. Yet, despite billions of years of coexistence, the area of research exploring fungal-bacterial interactions, particularly within the context of polymicrobial infections, is still in its infancy. However, reports describing a multitude of wide-ranging interactions between the fungal pathogen Candida albicans and various bacterial pathogens are on the rise. An example of a mutually beneficial interaction is coaggregation, a phenomenon that takes place in oral biofilms where the adhesion of C. albicans to oral bacteria is considered crucial for its colonization of the oral cavity. In contrast, the interaction between C. albicans and Pseudomonas aeruginosa is described as being competitive and antagonistic in nature. Another intriguing interaction is that occurring between Staphylococcus aureus and C. albicans, which although not yet fully characterized, appears to be initially synergistic. These complex interactions between such diverse and important pathogens would have significant clinical implications if they occurred in an immunocompromised host. Therefore, understanding the mechanisms of adhesion and signaling involved in fungal-bacterial interactions may lead to the development of novel therapeutic strategies for impeding microbial colonization and development of polymicrobial disease.

Antifungal resistance and susceptibilityBacterial biofilms and quorum sensingOral microbiology and periodontitis researchCandida albicansBiofilmMicrobiologyBiologyContext (archaeology)Corpus albicansPseudomonas aeruginosaColonizationBacteriaStaphylococcus aureus

MeSH terms

AnimalsBacterial AdhesionBacterial InfectionsCandida albicansCandidiasisHumansBacterial Physiological PhenomenaBiofilms
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