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Updated: Mar 21, 2026

Assessing Anti-fungal Activity of Isolated Alveolar Macrophages by Confocal Microscopy
Published on: July 9, 2014
Calcineurin Orchestrates Lateral Transfer of Aspergillus fumigatus during Macrophage Cell Death
Anand Shah1, Shichina Kannambath1, Susanne Herbst1
11 National Heart and Lung Institute.
Rationale:
Pulmonary aspergillosis is a lethal mold infection in the immunocompromised host. Understanding initial control of infection and how this is altered in the immunocompromised host are key goals for comprehension of the pathogenesis of pulmonary aspergillosis.
Objectives:
To characterize the outcome of human macrophage infection with Aspergillus fumigatus and how this is altered in transplant recipients on calcineurin inhibitor immunosuppressants.
Methods:
We defined the outcome of human macrophage infection with A. fumigatus, as well as the impact of calcineurin inhibitors, through a combination of single-cell fluorescence imaging, transcriptomics, proteomics, and in vivo studies.
Measurements And Main Results:
Macrophage phagocytosis of A. fumigatus enabled control of 90% of fungal germination. However, fungal germination in the late phagosome led to macrophage necrosis. During programmed necroptosis, we observed frequent cell-cell transfer of A. fumigatus between macrophages, which assists subsequent control of germination in recipient macrophages. Lateral transfer occurred through actin-dependent exocytosis of the late endosome in a vasodilator-stimulated phosphoprotein envelope. Its relevance to the control of fungal germination was also shown by direct visualization in our zebrafish aspergillosis model in vivo. The calcineurin inhibitor FK506 (tacrolimus) reduced cell death and lateral transfer in vitro by 50%. This resulted in uncontrolled fungal germination in macrophages and also resulted in hyphal escape.
Conclusions:
These observations identify programmed, necrosis-dependent lateral transfer of A. fumigatus between macrophages as an important host strategy for controlling fungal germination. This process is critically dependent on calcineurin. Our studies provide fundamental insights into the pathogenesis of pulmonary aspergillosis in the immunocompromised host.
Insights
Host macrophages control Aspergillus fumigatus via cell-to-cell transfer, a process impaired by immunosuppressants like tacrolimus, increasing fungal germination and escape in pulmonary aspergillosis.
Area of Science:
- Immunology
- Mycology
- Pathogenesis
Background:
- Pulmonary aspergillosis is a severe mold infection in immunocompromised individuals.
- Understanding host-pathogen interactions is crucial for managing aspergillosis.
Purpose of the Study:
- To investigate human macrophage response to Aspergillus fumigatus.
- To determine the impact of calcineurin inhibitors on this interaction.
Main Methods:
- Single-cell imaging, transcriptomics, proteomics, and in vivo zebrafish models were used.
- Human macrophages were infected with A. fumigatus, with and without calcineurin inhibitors.
Main Results:
- Macrophage phagocytosis controlled 90% of fungal germination.
- Fungal germination led to macrophage necrosis and cell-cell transfer of A. fumigatus.
- Calcineurin inhibitor FK506 reduced cell death and transfer, leading to uncontrolled germination and hyphal escape.
Conclusions:
- Programmed, necrosis-dependent cell-cell transfer of A. fumigatus is a key host defense mechanism.
- This transfer process is dependent on calcineurin.
- Impairment of this pathway by immunosuppressants contributes to pulmonary aspergillosis pathogenesis.
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