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Immunological and microbial shifts in the aging rhesus macaque lung during nontuberculous mycobacterial infection

  • Isaac R. Cinco
  • , Ethan G. Napier
  • , Nicholas S. Rhoades
  • , Michael H. Davies
  • , Derek B. Allison
  • , Steven G. Kohama
  • , Luiz Bermudez
  • , Kevin Winthrop
  • , Cristina Fuss
  • , Eliot R. Spindel
  • , Ilhem Messaoudi

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

Nontuberculous mycobacteria (NTM) are environmentally ubiquitous organisms that predominately cause NTM pulmonary disease (NTMPD) in individuals over the age of 65. The incidence of NTMPD has increased in the U.S., exceeding that of Mycobacterium tuberculosis. However, the mechanisms leading to higher susceptibility and severity of NTMPD with aging are poorly defined in part due to the lack of animal models that accurately recapitulate human disease. Here, we compared bacterial load, microbial communities, and host responses longitudinally between three young (two female and one male) and two aged (two female) rhesus macaques inoculated with Mycobacterium avium subsp. hominissuis (MAH) in the right caudal lobe. Unilateral infection resulted in a low bacterial load in both young and aged animals confined to the infected side. Although a robust inflammatory response was only observed in the inoculated lung, immune cell infiltration and antigen-specific T cells were detected in both lungs. Computed tomography, gross pathology, and histopathology revealed increased disease severity and persistence of bacterial DNA in aged animals. Additional analyses showed the translocation of gut and oral-pharyngeal bacterial DNA into the lower respiratory microbiome. Finally, single-cell RNA sequencing revealed a heightened inflammatory response to MAH infection by alveolar macrophages in aged animals. These data are consistent with the model that increased disease severity in the aged is mediated by a dysregulated macrophage response that may be sustained through persistent antigen presence. IMPORTANCE Nontuberculous mycobacteria (NTM) are emerging as pathogens of high consequence, as cases of NTM pulmonary disease (NTMPD) have exceeded those of Mycobacterium tuberculosis. NTMPD can be debilitating, particularly in patients over 65 years of age, as it causes chronic cough and fatigue requiring prolonged treatments with antibiotics. The underlying mechanisms of this increased disease severity with age are poorly understood, hampering the development of therapeutics and vaccines. Here, we use a rhesus macaque model to investigate the impact of age on host-NTM interactions. This work shows that aging is associated with increased disease severity and bacterial persistence in aged rhesus macaques, thus providing a preclinical model to develop and test novel therapeutics and interventions.

Original languageEnglish
JournalmBio
Volume15
Issue number6
DOIs
StatePublished - Jun 2024

Bibliographical note

Publisher Copyright:
Copyright © 2024 Cinco et al.

Funding

The authors thank Dr. Delphine Malherbe and Dr. Michael Powers for their feedback on the manuscript. This work was supported by R01AI152258-04. The ONPRC Division of Comparative Medicine and veterinary staff are supported by P51-OD011092. Sequencing was carried out by the OncoGenomics Shared Resource Facility (OG SRF), and the Biospecimen Procurement & Translational Pathology Shared Resource Facility of the University of Kentucky Markey Cancer Center (P30CA177558). N.S.R., S.G.K., K.W., E.R.S., and I.M. conceived and designed the experiments. I.M. obtained funding. M.H.D., S.G.K., and E.R.S. identified suitable animals and assisted with animal protocols. M.H.D., S.G.K., and E.R.S. collected samples. N.S.R., I.R.C., E.G.N., M.H.D., L.B., C.F., and I.M. performed the experiments. N.S.R., I.R.C., E.G.N., D.B.A., and C.F. analyzed the data. I.R.C., E.G.N., and I.M. interpreted the results. I.R.C., E.G.N., and I.M. wrote the paper.

FundersFunder number
University of Kentucky Markey Comprehensive Cancer CenterP30CA177558

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 3 - Good Health and Well-being
      SDG 3 Good Health and Well-being

    Keywords

    • M. avium complex
    • aging
    • lung
    • lung immunology
    • microbiome
    • rhesus macaque
    • single-cell RNA sequencing

    ASJC Scopus subject areas

    • Microbiology
    • Virology

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