Type I interferons modulate autophagy to shape gemcitabine response in pancreatic cancer cells

Pancreatic ductal adenocarcinoma (PDAC) is an aggressive malignancy characterized by poor prognosis and limited response to gemcitabine, the standard first‐line chemotherapy. One major contributor to chemoresistance is autophagy, a process frequently upregulated in PDAC. In this study, we examined the ability of type I interferons (IFNα2b and IFNβ1a) to modulate autophagy and disturb tumor cell resistance to gemcitabine. PDAC cells were treated with increasing concentrations of IFNα2b or IFNβ1a, and cell proliferation was assessed by [ 3 H]‐thymidine incorporation. Apoptosis was evaluated by TUNEL staining following treatments with interferons and/or gemcitabine. STAT1 phosphorylation was analyzed as a marker of downstream type I interferon signaling. Autophagy was analyzed by western blot for LC3B, Beclin‐1, Bcl‐XL and p62/SQSTM1, and by quantifying autophagic flux using mCherry‐EGFP‐LC3B‐transfected cells in the presence or absence of lysosomal inhibitors. We found that IFNα2b promoted autophagic flux and reduced gemcitabine‐induced cell death, indicating a cytoprotective role. In contrast, IFNβ1a reduced autophagosome formation and significantly enhanced cell death, without clear evidence of altering autophagic flux. Both interferons induced STAT1 phosphorylation, confirming engagement of downstream type I interferon signaling. Our findings highlight the contrasting roles of IFNα2b and IFNβ1a in the regulation of autophagy and gemcitabine response and suggest that IFNβ1a, by reducing autophagosome formation, may sensitize PDAC cells to chemotherapy. These findings identify IFNβ1a as a potential chemosensitizing agent in PDAC and provide a rationale for further evaluating combinations of IFNβ1a, gemcitabine, and autophagy‐targeting strategies to overcome chemoresistance.

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Journal
FEBS Open Bio
Published
2026-09-15
DOI
https://doi.org/10.1002/2211-5463.70342
Primary Topic
Autophagy in Disease and Therapy
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article
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article

Type I interferons modulate autophagy to shape gemcitabine response in pancreatic cancer cells

Daniel H. Grasso, Juan Garona, Daniela L. Papademetrio, Élida Álvarez et al.
FEBS Open Bio
Autophagy in Disease and Therapy
article

Type I interferons modulate autophagy to shape gemcitabine response in pancreatic cancer cells

Daniel H. Grasso, Juan Garona, Daniela L. Papademetrio, Élida Álvarez, Santiago A. Behr, Martín M. Ledesma, Lucy E. Bonilla, Silvina L. Lompardía, Maria N. Garcia, Matías A. Pibuel, María L. Palanek
article en

Abstract

Pancreatic ductal adenocarcinoma (PDAC) is an aggressive malignancy characterized by poor prognosis and limited response to gemcitabine, the standard first‐line chemotherapy. One major contributor to chemoresistance is autophagy, a process frequently upregulated in PDAC. In this study, we examined the ability of type I interferons (IFNα2b and IFNβ1a) to modulate autophagy and disturb tumor cell resistance to gemcitabine. PDAC cells were treated with increasing concentrations of IFNα2b or IFNβ1a, and cell proliferation was assessed by [ 3 H]‐thymidine incorporation. Apoptosis was evaluated by TUNEL staining following treatments with interferons and/or gemcitabine. STAT1 phosphorylation was analyzed as a marker of downstream type I interferon signaling. Autophagy was analyzed by western blot for LC3B, Beclin‐1, Bcl‐XL and p62/SQSTM1, and by quantifying autophagic flux using mCherry‐EGFP‐LC3B‐transfected cells in the presence or absence of lysosomal inhibitors. We found that IFNα2b promoted autophagic flux and reduced gemcitabine‐induced cell death, indicating a cytoprotective role. In contrast, IFNβ1a reduced autophagosome formation and significantly enhanced cell death, without clear evidence of altering autophagic flux. Both interferons induced STAT1 phosphorylation, confirming engagement of downstream type I interferon signaling. Our findings highlight the contrasting roles of IFNα2b and IFNβ1a in the regulation of autophagy and gemcitabine response and suggest that IFNβ1a, by reducing autophagosome formation, may sensitize PDAC cells to chemotherapy. These findings identify IFNβ1a as a potential chemosensitizing agent in PDAC and provide a rationale for further evaluating combinations of IFNβ1a, gemcitabine, and autophagy‐targeting strategies to overcome chemoresistance.

FEBS Open Bio
National University of Quilmes (AR), Consejo Nacional de Investigaciones Científicas y Técnicas (AR), Universidad de Buenos Aires (AR), Hospital Regional de Alta Especialidad del Bajío (MX), Institute of Astronomy and Space Physics (AR), Hospital El Cruce (AR)
Good health and well-being
Openalex Percentile: Top 10%
Autophagy in Disease and Therapy
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