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April 15, 2026Oncogene0 citationsOpen Access

EGFR ligand Angiogenin predicts response to ALK5 inhibition in pancreatic cancer via a TNF-α paracrine axis in tumor-associated macrophages

SPSilvia PietrobonoVVVeronica De VitaDMDomenico Mangiameli

Key Points

  • The study aims to define predictive biomarkers for ALK5 inhibition in pancreatic cancer, particularly focusing on angiogenin.
  • Conducted a randomized phase II trial to assess angiongenin's predictive value for ALK5 inhibition combined with chemotherapy.
  • Evaluated baseline levels of ANG and correlated these with survival outcomes during treatment.
  • Investigated molecular mechanisms linking ANG to tumor-associated macrophages and TNF-α signaling.
  • High baseline angiogenin levels predicted poor survival with gemcitabine monotherapy but indicated significant benefit from adding galunisertib.
  • ALK5 inhibition reduced TNF-α levels and tumor-associated macrophage polarization, improving chemosensitivity in ANG-high models.
  • Elevated ANG levels correlated with systemic TNF-α, with interventions leading to markedly improved patient survival.

Abstract

Abstract Transforming growth factor-β (TGFβ) receptor ALK5 inhibition has shown promise in pancreatic ductal adenocarcinoma (PDAC), but predictive biomarkers remain undefined. We identify angiogenin (ANG) as a negative prognostic yet positive predictive biomarker for ALK5 inhibition combined with chemotherapy. In the randomized phase II H9H-MC-JBAJ trial, high baseline ANG predicted poor survival with gemcitabine alone but significant benefit from galunisertib addition. Mechanistic studies revealed that tumor-derived ANG binds epidermal growth factor receptor (EGFR) on tumor-associated macrophages (TAMs), activating RhoA-dependent cytoskeletal remodeling and autocrine ALK5/TGFβ signaling. This drives M2-like polarization and Smad2-mediated transcription of tumor necrosis factor-α (Tnf-α), which activates Nf-κB in neighboring tumor cells, conferring chemoresistance. ALK5 inhibition suppressed TAM-derived Tnf-α, reduced M2 polarization, prevented Nf-κB activation, and restored chemosensitivity in ANG-high models. Clinically, elevated ANG correlated with systemic TNF-α, and galunisertib reduced TNF-α exclusively in ANG-high patients, with reductions associated with markedly improved survival. These findings define an ANG–EGFR–TGFβ–TNF-α axis in TAMs as a stromal driver of PDAC chemoresistance, and provide a mechanistic rationale for the development of combination strategies targeting ALK5 signaling in ANG-high PDAC patients.

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Cite This Study

Pietrobono et al. (2026) studied this question.

synapsesocial.com/papers/69df2bece4eeef8a2a6b0d9dhttps://doi.org/10.1038/s41388-026-03774-0
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