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Updated: Jun 19, 2026

Candida albicans Biofilm Development on Medically-relevant Foreign Bodies in a Mouse Subcutaneous Model Followed by Bioluminescence Imaging
Published on: January 27, 2015
Characteristics of Candida albicans biofilms grown in a synthetic urine medium
Priya Uppuluri1, Hemamalini Dinakaran, Derek P Thomas
1Department of Biology and South Texas Center for Emerging Infectious Diseases, The University of Texas at San Antonio, San Antonio, Texas 78249, USA.
Abstract:
Urinary tract infections (UTIs) are the most common type of nosocomial infection, and Candida albicans is the most frequent organism causing fungal UTIs. Presence of an indwelling urinary catheter represents a significant risk factor for UTIs. Furthermore, these infections are frequently associated with the formation of biofilms on the surface of these catheters. Here, we describe the characterization of C. albicans biofilms formed in vitro using synthetic urine (SU) medium and the frequently used RPMI medium and compare the results. Biofilms of C. albicans strain SC5314 were formed in 96-well microtiter plates and on silicon elastomer pieces using both SU and RPMI media. Biofilm formation was monitored by microscopy and a colorimetric XTT [2,3-bis(2-methoxy-4-nitro-5-sulfophenyl)-2H-tetrazolium-5-carboxanilide] reduction assay. As in biofilms grown in RPMI medium, time course studies revealed that biofilm formation using SU medium occurred after an initial adherence phase, followed by growth, proliferation, and maturation. However, microscopy techniques revealed that the architectural complexity of biofilms formed in SU medium was lower than that observed for those formed using RPMI medium. In particular, the level of filamentation of cells within the biofilms formed in SU medium was diminished compared to those in the biofilms grown in RPMI medium. This observation was also corroborated by expression profiling of five filamentation-associated genes using quantitative real-time reverse transcriptase PCR. Sessile C. albicans cells were resistant to fluconazole and amphotericin B, irrespective of the medium used to form the biofilms. However, caspofungin exhibited potent in vitro activity at therapeutic levels against C. albicans biofilms grown in both SU and RPMI media.
Insights
This study compared Candida albicans biofilms grown in synthetic urine (SU) and RPMI media. Biofilms in SU medium showed reduced architectural complexity and filamentation, but caspofungin remained effective against both biofilm types.
Area of Science:
- Medical Mycology
- Infectious Diseases
- Biomaterials Science
Background:
- Urinary tract infections (UTIs) are common nosocomial infections, frequently caused by Candida albicans.
- Indwelling urinary catheters are a major risk factor for UTIs, often leading to biofilm formation.
- Candida albicans biofilms on catheters pose a significant clinical challenge.
Purpose of the Study:
- To characterize and compare Candida albicans biofilms formed in vitro using synthetic urine (SU) medium versus RPMI medium.
- To evaluate the impact of different media on biofilm architecture, filamentation, and antifungal susceptibility.
- To assess the efficacy of antifungal agents against C. albicans biofilms.
Main Methods:
- Candida albicans strain SC5314 biofilms were cultured in 96-well microtiter plates and on silicon elastomer pieces using SU and RPMI media.
- Biofilm formation was monitored using microscopy and the XTT reduction assay.
- Gene expression profiling of filamentation-associated genes and antifungal susceptibility testing were performed.
Main Results:
- Biofilm formation in SU medium followed similar time-course kinetics as RPMI medium but exhibited lower architectural complexity and reduced cell filamentation.
- Microscopy and gene expression analysis confirmed diminished filamentation in SU medium biofilms.
- Sessile cells were resistant to fluconazole and amphotericin B, but caspofungin demonstrated potent activity against biofilms in both media.
Conclusions:
- Synthetic urine medium supports Candida albicans biofilm formation with distinct architectural characteristics compared to RPMI medium.
- Reduced filamentation in SU medium biofilms does not compromise the efficacy of caspofungin.
- Caspofungin is a promising therapeutic option for treating Candida albicans catheter-associated UTIs.
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