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April 3, 2026Cell Death Discovery5 citationsOpen Access

Brain metastases exhibit distinct spatial patterns of resident and infiltrating macrophages

ARAvinoam RatzabiICItai M CaspitITIra Telechi

Key Points

  • This research aims to elucidate the spatial distribution and composition of tumor-associated macrophages (TAM) in brain metastases (BrM).
  • Conducted spatial analysis of TAM across various brain regions using experimental BrM models.
  • Utilized genetically traceable mouse models for identifying TAM subtypes based on origin and location.
  • Examined the relationship between TAM composition and BrM size, compartment, and cancer origin.
  • Identified distinct TAM subtypes with varying abundance in different brain compartments.
  • Observed that macrophages predominate differently based on BrM size, with microglia leading in early lesions.
  • Melanoma BrM showed significantly less MDM infiltration compared to lung and breast cancer BrM.

Abstract

Brain metastases (BrM) are a leading cause of morbidity and mortality, arising in multiple brain compartments. BrM colonization and progression are shaped by interactions with distinct tumor-associated macrophage (TAM) subsets, including microglia (MG), monocyte-derived macrophages (MDM), and border-associated macrophages (BAM). While transcriptomes of TAM have been characterized in detail, their spatial distribution, abundance, and compartment-specific composition -particularly in relation to BrM size and the cancer origin-remain poorly defined. Here, we performed a comprehensive spatial analysis of TAM subtypes across brain regions using experimental BrM models of lung and breast cancer, as well as melanoma. We distinguished TAM subsets by both origin and location, employing genetically traceable mouse models. We observed expansion of MG and BAM, as well as MDM infiltration associated with BrM, albeit with distinct compositions. Parenchymal BrM contained both MG and MDM, whereas ventricular and leptomeningeal BrM contained BAM and MDM but lacked MG. TAM abundance varied with BrM size, compartment, and cancer type: MG predominated in early parenchymal lesions, with MDM becoming dominant as tumors grew. Notably, melanoma BrM exhibited markedly reduced MDM infiltration compared with lung and breast cancer BrM. These findings highlight the need to tailor TAM-targeted therapies not only to the primary tumor type but also to the brain compartment affected. A deeper understanding of TAM dynamics across compartments may improve the precision and efficacy of BrM treatments.

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Cite This Study

Ratzabi et al. (2026) studied this question.

synapsesocial.com/papers/69cf5e115a333a821460c383https://doi.org/10.1038/s41420-026-03084-0
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Tumor-induced reprogramming of microglia to a DAM phenotype facilitates brain metastasis2026
  2. 2Diversity and function of tumor-associated macrophages in brain metastases: mechanisms and therapeutic prospects2026 · 4 citations
  3. 3Single-cell profiling reveals distinct populations of tumor-associated macrophages and metastatic tumor cells in breast cancer brain metastasis2026
  4. 4Immunogenomics and spatial proteomic mapping highlight distinct neuro-immune architectures in melanoma vs. non-melanoma-derived brain metastasis2024 · 7 citations
  5. 5BMRK-09 PROGNOSTIC ROLE OF TUMOR-INFILTRATING LYMPHOCYTES AND TERTIARY LYMPHOID STRUCTURES IN BRAIN METASTASIS2024