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Published on: April 14, 2011
Infection in a neonate caused by Pichia fabianii: importance of molecular identification
H S Bhally1, S Jain, C Shields
1Department of Pathology, The Johns Hopkins Medical Institutions, Baltinmore, MD 21187-093, USA.
Abstract:
Pichiafabianii, an uncommon yeast species recovered from clinical specimens, was documented as the cause of an infection in a 5-week-old female twin delivered at 25 and 3/7 weeks. She developed respiratory distress syndrome and necrotizing enterocolitis. At the time of the infection, she was febrile, thrombocytopenic, and still was requiring minimal ventilatory support. Blood cultures drawn on two consecutive days were positive for a germ tube negative yeast. Phenotypic methods including carbohydrate fermentations and assimilations (API 20C AUX) did not identify the yeast. Sequencing of D1/D2 domain of the large subunit rDNA was performed in one laboratory and sequencing a subunit of D2 performed in a second laboratory identified the yeast as P. fabianii. The organism was susceptible in vitro to amphotericin B, fluconazole and 5-fluorocytosinc. The patient responded to amphotericin B and removal of her vascular catheter. This case illustrates that there are an increasing number of fungi that may be pathogenic. Phenotypic tests may fail to identify them, emphasizing the need for commercially available, molecular based assays for identification.
Insights
Pichia fabianii, a rare yeast, caused a serious infection in a premature infant. Molecular identification was crucial when standard tests failed, highlighting the need for advanced diagnostics.
Area of Science:
- Medical Mycology
- Infectious Diseases
- Neonatal Care
Background:
- Pichia fabianii is an uncommon yeast species.
- Infections in premature neonates pose significant clinical challenges.
Observation:
- A 5-week-old premature twin developed respiratory distress and necrotizing enterocolitis.
- Blood cultures revealed a germ tube-negative yeast resistant to standard phenotypic identification.
- The infant presented with fever, thrombocytopenia, and required ventilatory support.
Findings:
- Molecular identification via rDNA sequencing confirmed Pichia fabianii.
- In vitro susceptibility testing showed sensitivity to amphotericin B, fluconazole, and 5-fluorocytosine.
- The patient improved with amphotericin B treatment and catheter removal.
Implications:
- This case highlights Pichia fabianii as an emerging fungal pathogen in clinical settings.
- Standard phenotypic methods may be insufficient for identifying unusual yeasts.
- The study underscores the importance of molecular diagnostic assays for accurate fungal identification in critically ill patients.
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