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Hartigan-O'Connor, D.

Publications and source records attributed to Hartigan-O'Connor, D..

2 recordsLinked to original sources

Characterization of immunosenescent alveolar macrophages in rhesus macaques

As the global population ages, understanding the mechanisms underlying age-related diseases becomes increasingly important. Inflammaging, a state of chronic inflammation and immune dysregulation, is a key feature of aging. Macrophages, as master regulators of inflammation, are critical to this process. However, the effects of natural aging on alveolar macrophages (AMs) in the lungs remain poorly understood. In this study, we evaluated AM biology in older compared with young rhesus macaques. We compared cytokine profiles in plasma and bronchoalveolar lavage (BAL) fluid between young and aged macaques and performed single-cell RNA sequencing (scRNA-seq) to characterize age-related transcriptional and functional changes in AMs. Compared to young animals, AMs from aged animals exhibited similar cytokine inflammaging profile observed in the plasma of elderly humans. However, the general decrease of chemokine levels in BAL fluid relative to plasma suggest BAL may not reflect AM status in the lung tissues of rhesus macaques. scRNA-seq data corroborated plasma inflammaging findings, revealing increased inflammatory cytokine responses in AMs from older macaques. The consistent elevation of macrophage migration inhibitory factor (MIF) across plasma, AMs, and BAL fluid marks it as a promising biomarker and potential therapeutic target for age-associated inflammation. scRNA-seq further identified genes and pathways linked to macrophage senescence and turnover, suggesting potential targets for therapeutic intervention. Overall, our findings highlight the essential role of tissue-resident macrophages in pulmonary aging and underscores the need to further investigate their role in age-associated lung disease.

immunology↗

FcRγ- NK cell induction by specific CMV and expansion by subclinical viral infections in rhesus macaques

Long-lived memory-like NK cells, characterized by FcR{gamma}-deficiency and enhanced responsiveness to antibody-bound virus-infected cells, have been found in certain human cytomegalovirus (HCMV)-seropositive individuals. Because humans are exposed to numerous microbes and environmental agents, specific relationships between HCMV and FcR{gamma}-deficient NK cells (also known as g-NK cells) have been challenging to define. Here, we show that a subgroup of rhesus cytomegalovirus (RhCMV)-seropositive macaques possesses FcR{gamma}-deficient NK cells that stably persist and display phenotype resembling human FcR{gamma}-deficient NK cells. Moreover, these macaque NK cells resembled human FcR{gamma}-deficient NK cells with respect to functional characteristics, including enhanced responsiveness to RhCMV-infected target in an antibody-dependent manner and hypo-responsiveness to tumor and cytokine stimulation. These cells were not detected in specific-pathogen-free (SPF) macaques free of RhCMV and six other viruses; however, experimental infection of SPF animals with RhCMV strain UCD59, but not RhCMV strain 68-1 or SIV, led to induction of FcR{gamma}-deficient NK cells. In non-SPF macaques, co-infection by RhCMV with other common viruses was associated with higher frequencies of FcR{gamma}-deficient NK cells. These results support a causal role for specific cytomegalovirus strain(s) in the induction of FcR{gamma}-deficient NK cells, and suggest that co-infection by other viruses further expands this memory-like NK cell pool.

immunology↗