Related Experiment Video
Updated: May 5, 2026

Generation of Fluorescent Protein Fusions in Candida Species
Published on: March 4, 2017
Emergence of non-albicans Candida species in neonatal candidemia
Deepak Juyal1, Munesh Sharma, Shekhar Pal
1Department of Microbiology and Immunology, Veer Chandra Singh Garhwali Government Medical Sciences and Research Institute, Srinagar Garhwal, Uttarakhand, India.
Background:
Candida species are one of the most common causes of blood stream infections among neonates and account for 9-13% of such infections. Although Candida albicans remains the most common fungal isolate from neonatal candidemia, longitudinal studies have detected a shift towards non-albicans Candida (NAC) species.
Aim:
To examine the prevalence and epidemiology of candidemia among infants admitted to our hospital.
Materials And Methods:
Blood samples were collected from 548 neonates and only those which yielded pure growth of Candida spp. were included in the study. The isolates were identified as per standard mycological techniques and antifungal susceptibility (AFS) was done by disc diffusion method.
Results:
Of the total 132 neonates included in the study, NAC species were responsible for 80.30% cases with C. parapsilosis (25.0%) and C. tropicalis (21.97%) as the most predominant species; whereas 19.70% of cases were caused by C. albicans. AFS results revealed that 65.91, 73.49, and 96.21% isolates were sensitive to fluconazole (FLK), itraconazole (ITR), and amphotericin B (AMB), respectively.
Conclusion:
Candidemia in neonates is an ominous prognostic sign and is an important entity in our hospital. Strict infection control strategies, appropriate preventive and therapeutic measures such as prophylactic antifungal use and a restrictive policy of antibiotic use should be implemented.
More Related Videos
07:42An Ex vivo Assay to Study Candida albicans Hyphal Morphogenesis in the Gastrointestinal Tract
Published on: July 1, 2020
08:31Candida albicans Biofilm Development on Medically-relevant Foreign Bodies in a Mouse Subcutaneous Model Followed by Bioluminescence Imaging
Published on: January 27, 2015