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ABCB1 overexpression through locus amplification represents an actionable target to combat paclitaxel resistance in pancreatic cancer cells

  • Cecilia Bergonzini
  • , Alessandro Gregori
  • , Tessa M. S. Hagens
  • , Vera E. van der Noord
  • , Bob van de Water
  • , Annelien J. M. Zweemer
  • , Bircan Coban
  • , Mjriam Capula
  • , Giulia Mantini
  • , Asia Botto
  • , Francesco Finamore
  • , Ingrid Garajova
  • , Liam A. McDonnell
  • , Thomas Schmidt
  • , Elisa Giovannetti*
  • , Erik H. J. Danen*
  • *Corresponding author for this work
  • Leiden University
  • Vrije Universiteit (VU) Amsterdam and VU Medical Center
  • Cancer Pharmacology Lab, Fondazione Pisana per la Scienza, via Giovannini 13, 56017 San Giuliano Terme, Pisa, Italy
  • Proteomics and Metabolomics Lab
  • University of Pisa
  • University Hospital of Parma

Research output: Contribution to journalArticleAcademicpeer-review

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Abstract

Background: Pancreatic ductal adenocarcinoma (PDAC) is one of the deadliest types of cancer and the chemotherapies such as gemcitabine/nab-paclitaxel are confronted with intrinsic or acquired resistance. The aim of this study was to investigate mechanisms underlying paclitaxel resistance in PDAC and explore strategies to overcome it. Methods: Three paclitaxel (PR) and gemcitabine resistant (GR) PDAC models were established. Transcriptomics and proteomics were used to identify conserved mechanisms of drug resistance. Genetic and pharmacological approaches were used to overcome paclitaxel resistance. Results: Upregulation of ABCB1 through locus amplification was identified as a conserved feature unique to PR cells. ABCB1 was not affected in any of the GR models and no cross resistance was observed. The ABCB1 inhibitor verapamil or siRNA-mediated ABCB1 depletion sensitized PR cells to paclitaxel and prevented efflux of ABCB1 substrates in all models. ABCB1 expression was associated with a trend towards shorter survival in patients who had received gemcitabine/nab-paclitaxel treatment. A pharmacological screen identified known and novel kinase inhibitors that attenuate efflux of ABCB1 substrates and sensitize PR PDAC cells to paclitaxel. Conclusion: Upregulation of ABCB1 through locus amplification represents a novel, conserved mechanism of PDAC paclitaxel resistance. Kinase inhibitors identified in this study can be further (pre) clinically explored as therapeutic strategies to overcome paclitaxel resistance in PDAC.
Original languageEnglish
Article number4
JournalJournal of experimental & clinical cancer research
Volume43
Issue number1
DOIs
Publication statusPublished - 1 Dec 2024

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • ABCB1
  • Kinase-inhibitors
  • Paclitaxel resistance
  • Pancreatic cancer

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