Multi-omics analyses reveal key immunological and metabolic correlates of mortality in HIV-associated Pneumocystis pneumonia

Pneumocystis jirovecii pneumonia (PCP) remains a major cause of life-threatening respiratory failure in people with advanced HIV, yet the biological factors associated with mortality are incompletely understood. We performed integrated transcriptomic, proteomic, and metabolomic profiling of bronchoalveolar lavage fluid from 42 adults with HIV-associated PCP, relating molecular signatures to mortality. We found that fungal burden, measured by sputum immunofluorescence, Pneumocystis qPCR, and 1,3-β-D-glucan, did not differ between survivors and non-survivors or correlate with baseline gas exchange. Instead, non-survivors exhibited a bronchoalveolar immunometabolic failure signature characterised by marked depletion of immunoglobulins and complement, reduced pattern recognition receptors and fibroblast growth factor family proteins, and broad disruption of extracellular matrix organisation. Metabolomic profiling revealed enrichment of arginine-urea cycle and tricarboxylic acid pathways, with coordinated accumulation of arginine, citrulline, and TCA cycle intermediates consistent with nitrosative and mitochondrial stress. An integrated proteo-metabolomic score summarising this state was significantly higher in non-survivors and did not correlate with fungal burden or cytomegalovirus co-infection. In an immunodeficient precision-cut lung slice model, antigen-screened intravenous immunoglobulin restored macrophage-mediated Pneumocystis clearance, providing proof-of-concept for opsonic augmentation. Our findings indicate that mortality in HIV-PCP is defined by profound immunometabolic failure, highlighting humoral depletion and impaired alveolar repair as potential targets for host-directed adjunctive therapy.

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Publication Details

Journal
JCI Insight
Published
2026-10-06
DOI
https://doi.org/10.1172/jci.insight.206942
Primary Topic
Pneumocystis jirovecii pneumonia detection and treatment
Type
article
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article

Multi-omics analyses reveal key immunological and metabolic correlates of mortality in HIV-associated Pneumocystis pneumonia

Graeme Meintjes, Vaishnavi R. Kumaran, Nelesh Premapragasan Govender, Peter Rossi-Smith et al.
JCI Insight
Pneumocystis jirovecii pneumonia detection and treatment
article

Multi-omics analyses reveal key immunological and metabolic correlates of mortality in HIV-associated Pneumocystis pneumonia

Graeme Meintjes, Vaishnavi R. Kumaran, Nelesh Premapragasan Govender, Peter Rossi-Smith, Joseph N Jarvis, Ayanda Trevor Mnguni, Dora Pungan, Robert J. Samuels, Kamil Skirlo, Sean Wasserman, Leena Syed, Rachel Lai, Jay K Kolls, Trevor Ferris
article en

Abstract

Pneumocystis jirovecii pneumonia (PCP) remains a major cause of life-threatening respiratory failure in people with advanced HIV, yet the biological factors associated with mortality are incompletely understood. We performed integrated transcriptomic, proteomic, and metabolomic profiling of bronchoalveolar lavage fluid from 42 adults with HIV-associated PCP, relating molecular signatures to mortality. We found that fungal burden, measured by sputum immunofluorescence, Pneumocystis qPCR, and 1,3-β-D-glucan, did not differ between survivors and non-survivors or correlate with baseline gas exchange. Instead, non-survivors exhibited a bronchoalveolar immunometabolic failure signature characterised by marked depletion of immunoglobulins and complement, reduced pattern recognition receptors and fibroblast growth factor family proteins, and broad disruption of extracellular matrix organisation. Metabolomic profiling revealed enrichment of arginine-urea cycle and tricarboxylic acid pathways, with coordinated accumulation of arginine, citrulline, and TCA cycle intermediates consistent with nitrosative and mitochondrial stress. An integrated proteo-metabolomic score summarising this state was significantly higher in non-survivors and did not correlate with fungal burden or cytomegalovirus co-infection. In an immunodeficient precision-cut lung slice model, antigen-screened intravenous immunoglobulin restored macrophage-mediated Pneumocystis clearance, providing proof-of-concept for opsonic augmentation. Our findings indicate that mortality in HIV-PCP is defined by profound immunometabolic failure, highlighting humoral depletion and impaired alveolar repair as potential targets for host-directed adjunctive therapy.

JCI Insight
Tulane University (US), University of Cape Town (ZA), Queen Mary University of London (GB), University of Exeter (GB), Stellenbosch University (ZA), London School of Hygiene & Tropical Medicine (GB), Blizard Institute (GB), Imperial College London (GB)
Good health and well-being
Openalex Percentile: Top 13%
Pneumocystis jirovecii pneumonia detection and treatment
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