Jean-Pierre Quenot, Fanny Lanternier, Marie-Elisabeth Bougnoux, Marc Sautour, Frédéric Dalle, Léa Boulnois, Bianca Podac, Vishukumar Aimanianda, Pierre-Emmanuel Charles, Thomas Maldiney, Lionel Piroth, Mathieu Blot, Claude Boccara, Olivier Thouvenin, Jean-Marie Chassot, Emilie Sitterlé, Dea Garcia-Hermoso
Journal: Frontiers in cellular and infection microbiology 2023;13():1183340
PMID: 37502605
INTRODUCTION
The diagnosis of cutaneous manifestations of deep mycoses relies on both histopathological and direct examinations. Yet, the current diagnostic criteria cannot prevent missed cases, including invasive aspergillosis, which requires the development of a novel diagnostic approach and imaging tools. We recently introduced the use of dynamic full-field optical coherence tomography (D-FF-OCT) in fungal diagnostics with a definition approaching that of conventional microscopy and the ability to return metabolic information regarding different fungal species. The present work focuses on subcellular dynamics and live-cell imaging of with D-FF-OCT to follow the fungal growth stages.
METHODS
The ATCC 204305 quality-control strain was used for all imaging experiments, following incubation times varying between 24 and 72 h at 30°C in a humidified chamber on Sabouraud dextrose agar. Fungal growth was subsequently monitored with D-FF-OCT for up to 5 h at room temperature and following the pharmacological stress of either voriconazole, amphotericin B, or caspofungin gradient concentration.
RESULTS
D-FF-OCT images allow not only the visualization of intracellular trafficking of vacuoles but also an evolving dynamic segmentation of conidiophores depending on the chronological development and aging of the hyphae or the effect of antifungal treatment. The same applies to conidial heads, with the most intense D-FF-OCT signal coming from vesicles, revealing a changing dynamic within a few hours only, as well as complete extinction following subsequent drying of the Sabouraud dextrose agar.
DISCUSSION
These results provide additional data on the ability of D-FF-OCT to monitor some of the main life cycle processes, dynamics, and intracellular trafficking of vacuoles in , with or without the effect of pharmacological stress. Such complementary metabolic information could help both clinicians and microbiologists in either mechanistic studies toward experimental mycology or the development of a potential D-FF-OCT-guided diagnosis of superficial fungal infections.
Copyright © 2023 Maldiney, Garcia-Hermoso, Sitterlé, Chassot, Thouvenin, Boccara, Blot, Piroth, Quenot, Charles, Aimanianda, Podac, Boulnois, Dalle, Sautour, Bougnoux and Lanternier.
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