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Updated: Jul 17, 2025

Author Spotlight: Enhancing Candida albicans Detection in Catheter Infections Using Fluorescent Protein Tagging
Published on: March 22, 2024
Biofilm: The invisible culprit in catheter-induced candidemia
Meiliyana Wijaya1, Ryan Halleyantoro2, Jane Florida Kalumpiu3
1Department of Parasitology, School of Medicine and Health Sciences, Atma Jaya Catholic University of Indonesia, Jakarta, Indonesia.
Abstract:
Candidemia is the most common form of invasive fungal infection associated with several risk factors, and one of them is the use of medical devices, to which microbial biofilms can attach. Candidemia related to the use of peripheral intravascular and central venous catheters (CVC) is referred to as Candida catheter-related bloodstream infection, with more than 90% being related to CVC usage. The infection is associated with a higher morbidity and mortality rate than nosocomial bacterial infections. Candida spp. can protect themselves from the host immune system and antifungal drugs because of the biofilm structure, which is potentiated by the extracellular matrix (ECM). Candida albicans and Candida parapsilosis are the most pathogenic species often found to form biofilms associated with catheter usage. Biofilm formation of C. albicans includes four mechanisms: attachment, morphogenesis, maturation and dispersion. The biofilms formed between C. albicans and non-albicans spp. differ in ECM structure and composition and are associated with the persistence of colonization to infection for various catheter materials and antifungal resistance. Efforts to combat Candida spp. biofilm formation on catheters are still challenging because not all patients, especially those who are critically ill, can be recommended for catheter removal; also to be considered are the characteristics of the biofilm itself, which readily colonizes the permanent medical devices used. The limited choice and increasing systemic antifungal resistance also make treating it more difficult. Hence, alternative strategies have been developed to manage Candida biofilm. Current options for prevention or therapy in combination with systemic antifungal medications include lock therapy, catheter coating, natural peptide products and photodynamic inactivation.
Insights
Candidemia, a serious bloodstream infection, often stems from medical catheters colonized by Candida biofilms. New strategies are crucial due to antifungal resistance and challenges in biofilm removal.
Area of Science:
- Medical Mycology
- Infectious Diseases
- Biomaterials Science
Background:
- Candidemia is a prevalent invasive fungal infection, frequently linked to medical devices like central venous catheters (CVCs).
- Candida catheter-related bloodstream infections (CRBSIs) exhibit higher morbidity and mortality than bacterial counterparts.
- Biofilms formed by Candida species on catheters protect against host defenses and antifungal agents.
Purpose of the Study:
- To review the challenges and current alternative strategies for managing Candida biofilm on catheters.
- To highlight the significance of Candida biofilms in CRBSIs and the limitations of existing treatments.
Main Methods:
- Literature review focusing on Candida biofilm formation mechanisms on catheters.
- Analysis of current and emerging therapeutic and preventive strategies against Candida biofilms.
- Examination of the role of extracellular matrix (ECM) in biofilm structure and antifungal resistance.
Main Results:
- Candida albicans and Candida parapsilosis are key species forming catheter biofilms.
- Biofilm composition varies between Candida species and catheter materials, impacting antifungal resistance.
- Catheter removal is not always feasible, and systemic antifungal resistance is increasing.
Conclusions:
- Managing Candida biofilms on catheters remains a significant clinical challenge.
- Alternative strategies like lock therapy, catheter coatings, and photodynamic inactivation show promise.
- Integrated approaches combining systemic antifungals with novel methods are needed to combat CRBSIs effectively.
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