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Updated: Aug 19, 2026

A 96 Well Microtiter Plate-based Method for Monitoring Formation and Antifungal Susceptibility Testing of Candida albicans Biofilms
Published on: October 21, 2010
Resistance to platelet microbicidal protein results in increased severity of experimental Candida albicans
M R Yeaman1, S S Soldan, M A Ghannoum
1Division of Infectious Diseases, St. John's Cardiovascular Research Center, Los Angeles County Harbor-UCLA Medical Center, Torrance, California 90509, USA.
Abstract:
Thrombin-induced platelet microbicidal protein (tPMP) exerts potent in vitro microbicidal activity against pathogens commonly found in the bloodstream, including Staphylococcus aureus, Staphylococcus epidermidis, and Candida albicans. Localized platelet release of tPMP may be important in defense against infections involving the vascular endothelium caused by tPMP-susceptible organisms. In contrast, pathogens capable of surviving in the presence of tPMP could then exploit the platelet as an adhesive surface for attachment to damaged endothelium. To examine these hypotheses, we derived a tPMP-resistant (tPMP(r)) C. albicans strain from its tPMP-sensitive (tPMP(s)) parental strains were equivalent in vitro as assessed by genotyping (electrophoretic karyotype and restriction endonuclease analysis of genomic DNA), biotyping, germination, platelet aggregation, adherence to vascular endothelial cells, and growth characteristics. In addition, the tPMP(r) phenotype was stable following multiple in vitro and in vivo passages. We then investigated the in vivo relevance of tPMP susceptibility on endovascular infection using a rabbit model of endocarditis and hematogenous dissemination. Rabbits with transaortic catheters (n = 15 in each group) were challenged with either the tPMP(s) or tPMP(r) C. albicans strain. All rabbits developed C. albicans-induced endocarditis, as determined by the presence of infected vegetations. In rabbits challenged with tPMP(s) strain (P < 0.001). These results were seen in the absence of differences in either initial adherence of strains to cardiac valves or vegetation weights. Furthermore, although these C. albicans strains induced equivalent rates and extent of hematogenous renal infection, only the tPMP(r) strain disseminated hematogenously to the spleen (15 of 15 rabbits) versus 0 of 15 [tpmp(s) strain]; P < 0.0001). Thus, tPMP(r) C. albicans caused more-severe endocarditis and produced greater metastatic sequelae than the tPMP(s) counterpart.
Insights
Candida albicans resistant to thrombin-induced platelet microbicidal protein (tPMP) caused more severe endocarditis and disseminated more widely in rabbits than susceptible strains. This highlights tPMP resistance as a factor in invasive fungal infections.
Area of Science:
- Microbiology
- Immunology
- Infectious Diseases
Background:
- Thrombin-induced platelet microbicidal protein (tPMP) has potent antimicrobial activity against bloodstream pathogens like Candida albicans.
- Platelet release of tPMP may defend against vascular endothelium infections.
- Pathogens evading tPMP may use platelets for adherence to damaged endothelium.
Purpose of the Study:
- To investigate the in vivo relevance of tPMP susceptibility in Candida albicans endocarditis and dissemination.
- To compare the virulence of tPMP-susceptible (tPMP(s)) and tPMP-resistant (tPMP(r)) C. albicans strains in a rabbit model.
Main Methods:
- Derived a tPMP-resistant C. albicans strain, confirming phenotypic and genotypic equivalence to the parental tPMP-sensitive strain.
- Utilized a rabbit model of endocarditis and hematogenous dissemination, challenging animals with either tPMP(s) or tPMP(r) C. albicans.
- Assessed endocarditis severity, vegetation characteristics, and metastatic infection in kidneys and spleen.
Main Results:
- Both tPMP(s) and tPMP(r) strains caused endocarditis, but the tPMP(r) strain led to significantly more severe infections (P < 0.001).
- No differences were observed in initial adherence to cardiac valves or vegetation weights between the strains.
- While both strains caused similar renal infections, only the tPMP(r) strain disseminated to the spleen in all rabbits (P < 0.0001).
Conclusions:
- tPMP resistance in C. albicans is associated with increased severity of endocarditis.
- tPMP resistance enhances the metastatic potential of C. albicans, leading to greater systemic spread.
- tPMP resistance is a critical factor influencing the pathogenesis of invasive Candida albicans infections.

