Heterogeneity and ontogeny of mouse thymic macrophages reveal a requirement for Csf1r-expressing myeloid cells during early T cell development

Thymic macrophages (TMs) maintain tissue homeostasis by clearing the large numbers of apoptotic cells generated during T cell development, but how TM heterogeneity relates to their developmental origin and role in thymocyte maturation remains incompletely understood. Using complementary flow-cytometric, single-cell transcriptomic, and genetic approaches, we resolved two major TM populations corresponding to TIMD4 + cortical and CX3CR1 + medullary/cortico-medullary macrophages. TIMD4 + VCAM1 + TMs displayed a prominent efferocytosis and apoptotic-cell-clearance program, whereas TIMD4 - VCAM1 + TMs were enriched for antigen-presentation and interferon-response pathways. Fate mapping revealed unequal progenitor contributions to these populations, and CCR2 deficiency selectively reduced TIMD4 - VCAM1 + TMs, and thymic monocytes, supporting ongoing input from circulating precursors. Exploratory pseudotime analysis further identified a transcriptional continuum from Ly6c2 + Ccr2 + monocytes toward macrophage states. Using MaFIA fetal thymic organ cultures, AP20187-mediated depletion of Csf1r- expressing myeloid cells reduced CD4 + CD8 + thymocyte differentiation and produced a coordinated accumulation of DN3 cells, loss of DN4 cells, and reduction in CD27 expression. These convergent changes identify the DN3-to-DN4 transition as a developmental stage that requires an intact Csf1r -expressing myeloid compartment and establish a functional connection between the thymic myeloid niche and early αβ T cell development. Together, our study refines the phenotypic and developmental organization of mouse TMs and reveals a previously underappreciated requirement for myeloid-cell support during progression through the β-selection checkpoint.

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Publication Details

Journal
eLife
Published
2026-10-07
DOI
https://doi.org/10.7554/elife.109219.3
Primary Topic
T-cell and B-cell Immunology
Type
article
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article

Heterogeneity and ontogeny of mouse thymic macrophages reveal a requirement for Csf1r-expressing myeloid cells during early T cell development

Anthony Wong, Juan Carlos Zúñiga‐Pflücker, Vinothkumar Rajan, Slava Epelman et al.
eLife
T-cell and B-cell Immunology
article

Heterogeneity and ontogeny of mouse thymic macrophages reveal a requirement for Csf1r-expressing myeloid cells during early T cell development

Anthony Wong, Juan Carlos Zúñiga‐Pflücker, Vinothkumar Rajan, Slava Epelman, Helen Wang
article en

Abstract

Thymic macrophages (TMs) maintain tissue homeostasis by clearing the large numbers of apoptotic cells generated during T cell development, but how TM heterogeneity relates to their developmental origin and role in thymocyte maturation remains incompletely understood. Using complementary flow-cytometric, single-cell transcriptomic, and genetic approaches, we resolved two major TM populations corresponding to TIMD4 + cortical and CX3CR1 + medullary/cortico-medullary macrophages. TIMD4 + VCAM1 + TMs displayed a prominent efferocytosis and apoptotic-cell-clearance program, whereas TIMD4 - VCAM1 + TMs were enriched for antigen-presentation and interferon-response pathways. Fate mapping revealed unequal progenitor contributions to these populations, and CCR2 deficiency selectively reduced TIMD4 - VCAM1 + TMs, and thymic monocytes, supporting ongoing input from circulating precursors. Exploratory pseudotime analysis further identified a transcriptional continuum from Ly6c2 + Ccr2 + monocytes toward macrophage states. Using MaFIA fetal thymic organ cultures, AP20187-mediated depletion of Csf1r- expressing myeloid cells reduced CD4 + CD8 + thymocyte differentiation and produced a coordinated accumulation of DN3 cells, loss of DN4 cells, and reduction in CD27 expression. These convergent changes identify the DN3-to-DN4 transition as a developmental stage that requires an intact Csf1r -expressing myeloid compartment and establish a functional connection between the thymic myeloid niche and early αβ T cell development. Together, our study refines the phenotypic and developmental organization of mouse TMs and reveals a previously underappreciated requirement for myeloid-cell support during progression through the β-selection checkpoint.

eLifeVol. 15
University Health Network (CA), University of Toronto (CA), Ted Rogers Centre for Heart Research (CA), Toronto General Hospital Research Institute, Sunnybrook Research Institute
Openalex Percentile: Top 19%
T-cell and B-cell Immunology
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