Myeloid Cell States in Influenza-Associated Pulmonary Aspergillosis Are Shaped by Iron Overload and Metabolic Reprogramming
Grau, M. S.; Jackson, B. P.; Ringelberg, C.; Kolling, F. W.; Deepe, G. S.; Cramer, R. A.; Obar, J. J.
Show abstract
Virus-associated pulmonary aspergillosis is a life-threatening secondary infection that substantially increases morbidity and mortality in critically ill patients with respiratory virus infections. Influenza A virus (IAV) and SARS-CoV2 are known to disrupt pulmonary homeostasis, the mechanisms by which these perturbations render the host susceptibility to Aspergillus fumigatus (Af) remain incompletely understood. Here, we integrate an established murine model of influenza-associated pulmonary aspergillosis (IAPA) with single-cell RNA sequencing (scRNA-seq) to define the myeloid cell dysfunction that underlies IAPA establishment and progression. Single-cell transcriptomic profiling of pulmonary monocytes and macrophages revealed that IAV-Af coinfection drives a marked shift away from interferon-mediated antiviral and antigen presentation programs toward stress-associated and redox-regulatory transcriptional states. Pathway analyses demonstrated coordinated suppression of phagocytic and interferon signaling pathways alongside enrichment of oxidative stress and mitochondrial metabolic signatures - changes that closely recapitulate transcriptional defects previously reported in human IAPA patients. Myeloid cells from IAV-Af coinfected mice further exhibited increased oxidative phosphorylation alongside reduced glycolytic and phagocytic activity, consistent with impaired antifungal effector function. To elucidate how prior IAV infection generates a pulmonary microenvironment permissive to Af growth, we evaluated airway iron availability - a critical determinant of both fungal pathogenicity and immune regulation. IAV infection alone produced a significant elevation in bronchoalveolar iron levels accompanied by induction of iron-associated inflammatory mediators. Paradoxically, during IAV-Af coinfection, myeloid cells displayed markedly reduced expression of iron-sequestering and storage genes, revealing a fundamental disconnect between iron burden and cellular iron-handling capacity. Functionally, elevated iron accelerated Af germination and impaired macrophage-mediated fungal killing. Collectively, these findings identify IAV-induced pulmonary iron accumulation as a key driver of immunometabolic reprogramming in myeloid cells, resulting in compromised antifungal immunity and heightened susceptibility to secondary Af infection.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Fatty acid metabolism in neutrophils promotes lung damage and bacterial replication during tuberculosis. 96%
- Adiponectin pathway activation dampens inflammation and enhances alveolar macrophage fungal killing via LC3-associated phagocytosis 96%
- Exposure to mycobacterium remodels alveolar macrophages and the early innate response to Mycobacterium tuberculosis infection 96%
Similar papers in this journal
- Spatial transcriptomic characterization of COVID-19 pneumonitis identifies immune circuits related to tissue injury 95%
- mRNA-1273 vaccination protects against SARS-CoV-2 elicited lung inflammation in non-human primates 94%
- Loss of Fas-signaling in pro-fibrotic fibroblasts impairs homeostatic fibrosis resolution and promotes persistent pulmonary fibrosis 93%
Similar papers in this journal
Similar papers in this journal
- A Two-Step Activation Mechanism Enables Mast Cells to Differentiate their Response between Extracellular and Invasive Enterobacterial Infection 94%
- Cellular events of acute, resolving or progressive COVID-19 in SARS-CoV-2 infected non-human primates 94%
- Vascular Endothelial-derived SPARCL1 Exacerbates Viral Pneumonia Through Pro-Inflammatory Macrophage Activation 94%
Similar papers in this journal
- Lung epithelial signaling mediates early vaccine-induced CD4+ T cell activation and Mtb control 94%
- 3D light sheet fluorescence microscopy of lungs to dissect local host immune - Aspergillus fumigatus interactions 94%
- Bacterial strain-dependent dissociation of cell recruitment and cell-to-cell spread in early M. tuberculosis infection 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.