PTPN1/2 Inhibition Remodels the Pulmonary Myeloid Landscape to Induce Alveolar Macrophage-Mediated Control of Lung Metastasis.
basic_science · Level V
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- Record sourced from PubMed, PMID 42743229.
- Also identified by DOI 10.1158/0008-5472.CAN-26-0770.
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Abstract
Metastasis remains the leading cause of cancer mortality, yet effective therapies for inhibiting and treating metastasis are limited. Therapeutic responses are influenced by organ-specific immune microenvironments, highlighting the need to develop strategies to pharmacologically modulate these niches. Here, using the clinical-stage inhibitor ABBV-CLS-484 (AC484) as a chemical probe, we demonstrated that systemic PTPN1/2 inhibition remodels the pulmonary myeloid landscape, specifically activating alveolar macrophages (AMs) toward a tumoricidal state. Integrated single-cell and spatial transcriptomics and functional assays revealed that AC484 promotes accumulation, IFNγ production and responsiveness, and tumor-killing activity of AMs within metastatic lesions. Depletion of AMs diminished the anti-metastatic efficacy of AC484. Mechanistically, inhibition of PTPN1/2 amplified IFNγ-STAT1 signaling in AMs, and disrupting this pathway impaired the tumor control capability of AC484. These findings delineate a distinct innate immune axis where PTPN1/2 acts as a molecular "brake" on AM activation, suggesting that pharmacologically unleashing tissue-resident macrophages offers a therapeutic strategy to overcome metastatic progression, particularly in microenvironments where adaptive immunity is insufficient.