Tumor necrosis factor-α coordinates the macrophage innate immune response to Histoplasma capsulatum

ABSTRACT Histoplasma capsulatum is a fungal pathogen that thrives in macrophages until activated by interferon-gamma (IFN-γ). Tumor necrosis factor-α (TNF-α) is required for control of infection during adaptive immunity but does not directly activate macrophages to eliminate fungal elements. Collapse of immunity associated with TNF-α blockade is not accompanied by depression of IFN-γ. To determine if TNF-α antagonism impairs fungal clearance prior to adaptive immunity, we infected mice given anti-TNF-α and quantified lung H. capsulatum up to day 3 of infection. Anti-TNF-α elevated the number of organisms in the lungs by day 3. Neutralization of IFN-γ manifested a similar effect. Since neutralization of both cytokines impaired innate immunity, we hypothesized that the action of IFN-γ required TNF-α. IFN-γ-stimulated macrophages expressed fungicidal activity in vitro , and TNF-α neutralization or its congenital deficiency in macrophages reversed this effect. Blockade of TNF-α slightly dampened M1 response but did not promote M2. TNF-α was not required for IFN-γ to shift the metabolic capacity of macrophages. We investigated the production of nitric oxide, which is a mediator of anti- H . capsulatum activity by macrophages. In the absence of TNF-α, there was no difference when compared to IFN-γ stimulation alone. Lung macrophages harbored the highest infection burden in anti-TNF-α recipients. Though IFN-γ receptor 1 was modestly downregulated by anti-TNF-α blockade, this treatment downregulated pSTAT1 at day 2 of infection. TNF-α is required for optimal IFN-γ signaling and effector function of cytokine-stimulated macrophages. When TNF-α is absent, macrophages are insufficiently activated and fail to halt intracellular growth of yeast cells.

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Publication Details

Journal
Infection and Immunity
Published
2026-09-29
DOI
https://doi.org/10.1128/iai.00302-26
Primary Topic
Fungal Infections and Studies
Type
article
Field-Weighted Citation Impact
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article

Tumor necrosis factor-α coordinates the macrophage innate immune response to Histoplasma capsulatum

George S. Deepe, William R. Buesing, Bradford L. Crowther, Ty D. Troutman
Infection and Immunity
Fungal Infections and Studies
article

Tumor necrosis factor-α coordinates the macrophage innate immune response to Histoplasma capsulatum

George S. Deepe, William R. Buesing, Bradford L. Crowther, Ty D. Troutman
article en

Abstract

ABSTRACT Histoplasma capsulatum is a fungal pathogen that thrives in macrophages until activated by interferon-gamma (IFN-γ). Tumor necrosis factor-α (TNF-α) is required for control of infection during adaptive immunity but does not directly activate macrophages to eliminate fungal elements. Collapse of immunity associated with TNF-α blockade is not accompanied by depression of IFN-γ. To determine if TNF-α antagonism impairs fungal clearance prior to adaptive immunity, we infected mice given anti-TNF-α and quantified lung H. capsulatum up to day 3 of infection. Anti-TNF-α elevated the number of organisms in the lungs by day 3. Neutralization of IFN-γ manifested a similar effect. Since neutralization of both cytokines impaired innate immunity, we hypothesized that the action of IFN-γ required TNF-α. IFN-γ-stimulated macrophages expressed fungicidal activity in vitro , and TNF-α neutralization or its congenital deficiency in macrophages reversed this effect. Blockade of TNF-α slightly dampened M1 response but did not promote M2. TNF-α was not required for IFN-γ to shift the metabolic capacity of macrophages. We investigated the production of nitric oxide, which is a mediator of anti- H . capsulatum activity by macrophages. In the absence of TNF-α, there was no difference when compared to IFN-γ stimulation alone. Lung macrophages harbored the highest infection burden in anti-TNF-α recipients. Though IFN-γ receptor 1 was modestly downregulated by anti-TNF-α blockade, this treatment downregulated pSTAT1 at day 2 of infection. TNF-α is required for optimal IFN-γ signaling and effector function of cytokine-stimulated macrophages. When TNF-α is absent, macrophages are insufficiently activated and fail to halt intracellular growth of yeast cells.

Infection and Immunity
Cincinnati Children's Hospital Medical Center (US), University of Cincinnati (US), University of Cincinnati Medical Center (US)
Openalex Percentile: Top 11%
Fungal Infections and Studies
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