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Updated: Nov 30, 2025

Small-Scale Plasma Membrane Preparation for the Analysis of Candida albicans Cdr1-mGFPHis
Published on: June 13, 2021
Carrier-Mediated Drug Uptake in Fungal Pathogens
Mónica Galocha1,2, Inês Vieira Costa1,2, Miguel Cacho Teixeira1,2
1Department of Bioengineering, Instituto Superior Técnico, Universidade de Lisboa, 1049-001 Lisboa, Portugal.
Abstract:
Candida, Aspergillus, and Cryptococcus species are the most frequent cause of severe human fungal infections. Clinically relevant antifungal drugs are scarce, and their effectiveness are hampered by the ability of fungal cells to develop drug resistance mechanisms. Drug effectiveness and drug resistance in human pathogens is very often affected by their "transportome". Many studies have covered a panoply of drug resistance mechanisms that depend on drug efflux pumps belonging to the ATP-Binding Cassette and Major Facilitator Superfamily. However, the study of drug uptake mechanisms has been, to some extent, overlooked in pathogenic fungi. This review focuses on discussing current knowledge on drug uptake systems in fungal pathogens, highlighting the need for further studies on this topic of great importance. The following subjects are covered: (i) drugs imported by known transporter(s) in pathogenic fungi; and (ii) drugs imported by known transporter(s) in the model yeast Saccharomyces cerevisiae or in human parasites, aimed at the identification of their homologs in pathogenic fungi. Besides its contribution to increase the understanding of drug-pathogen interactions, the practical implications of identifying drug importers in human pathogens are discussed, particularly focusing on drug development strategies.
Insights
Drug uptake transporters are crucial for fungal infections but are understudied. This review highlights known drug importers in pathogenic fungi and related organisms, emphasizing their importance for developing new antifungal drugs.
Area of Science:
- Mycology
- Medical Microbiology
- Drug Discovery
Background:
- * Pathogenic fungi like *Candida*, *Aspergillus*, and *Cryptococcus* cause severe infections.
- * Antifungal drug scarcity and resistance limit treatment options.
- * Fungal transportomes, particularly drug uptake, are under-researched.
Purpose of the Study:
- * To review current knowledge on drug uptake systems in pathogenic fungi.
- * To identify potential drug importer targets for new antifungal therapies.
- * To explore drug uptake mechanisms in model yeasts and human parasites for insights into fungal pathogens.
Main Methods:
- * Literature review of studies on drug transporters in pathogenic fungi.
- * Analysis of drug uptake mechanisms in *Saccharomyces cerevisiae* and human parasites.
- * Identification of homologous transporters in pathogenic fungi.
Main Results:
- * Several drug importers have been identified in pathogenic fungi.
- * Comparison with model organisms reveals conserved and novel uptake systems.
- * Understanding drug influx is key to overcoming resistance.
Conclusions:
- * Drug uptake transporters represent a promising area for antifungal drug development.
- * Further research into fungal drug importers is essential for combating drug resistance.
- * Targeting drug uptake systems can enhance the efficacy of existing and novel antifungals.
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