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Barreiro, O.

Publications and source records attributed to Barreiro, O..

2 recordsLinked to original sources

Megakaryocyte emperipolesis arms neutrophils via intracellular provisioning

Neutrophils are phenotypically heterogenous cells that mediate host defense and tissue homeostasis. Here, we identify emperipolesis - the evolutionarily conserved process by which neutrophils pass through megakaryocytes - as a phenotypically transformative route of egress from bone marrow. By intravital microscopy and 3-D histology, we show that the rapid form emperipolesis is markedly enhanced under inflammatory conditions. Neutrophils exit from megakaryocytes directly to the blood, acquiring exosomes enriched in proteins related to metabolism, migration, and immune function. This transfer induces a distinct neutrophil phenotype characterized by enhanced glycolysis, oxidative phosphorylation, cytokine release, and longevity. Correspondingly, emperipolesis-educated neutrophils display accelerated migration in vitro and in vivo. Disrupting emperipolesis does not alter circulating neutrophil abundance but impairs neutrophil infiltration into inflamed tissues, including Pseudomonas aeruginosa-infected lung. These findings establish emperipolesis as a mechanism by which megakaryocytes amplify neutrophil-mediated immunity.

immunology↗

The CD8 immgenT framework as a universal reference of mouse CD8 Tαβ cell differentiation states

Mouse CD8+ T cell differentiation has been studied extensively in models of infections and tumors, yet no unified framework spans the full spectrum of immunological contexts. Within the immgenT project, we profiled RNA, surface markers, and TCR clonotypes in conventional CD8+ T cells across >600 samples, spanning multiple perturbations, tissues, and timepoints. Twenty-one clusters across naive, effector, circulating memory, tissue-resident memory, progenitor-exhausted, and terminally-exhausted CD8+ T cell compartments emerged, with striking molecular convergence across acute and chronic infections, tumors, autoimmunity, aging, and homeostasis, illustrating that shared transcriptional states support protective or dysfunctional outcomes depending on developmental history and microenvironment. We validate immgenT as a comprehensive reference by integrating external datasets from conditions not represented in immgenT and by defining a flow cytometry panel spanning the CD8+ T cell landscape. Thus, immgenT-CD8 provides a molecular framework for harmonizing CD8+ T cell literature and clarifies relationships across diverse immune challenges.

immunology↗