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Cancer-associated fibroblasts in pancreatic ductal adenocarcinoma determine response to SLC7A11 inhibition

  • George Sharbeen
  • , Joshua A. McCarroll
  • , Anouschka Akerman
  • , Chantal Kopecky
  • , Janet Youkhana
  • , John Kokkinos
  • , Jeff Holst
  • , Cyrille Boyer
  • , Mert Erkan
  • , David Goldstein
  • , Paul Timpson
  • , Thomas R. Cox
  • , Brooke A. Pereira
  • , Jessica L. Chitty
  • , Sigrid K. Fey
  • , Arafath K. Najumudeen
  • , Andrew D. Campbell
  • , Owen J. Sansom
  • , Rosa Mistica C. Ignacio
  • , Stephanie Naim
  • Jie Liu, Nelson Russia, Julia Lee, Angela Chou, Amber Johns, Anthony J. Gill, Estrella Gonzales-Aloy, Val Gebski, Yi Fang Guan, Marina Pajic, Nigel Turner, Minoti V. Apte, Thomas P. Davis, Jennifer P. Morton, Koroush S. Haghighi, Jorjina Kasparian, Benjamin J. McLean, Yordanos F. Setargew, Australian Pancreatic Cancer Genome Initiative, Neil D. Merrett, Phoebe A. Phillips

Research output: Contribution to journalArticlepeer-review

110 Citations (Scopus)

Abstract

Cancer-associated fibroblasts (CAF) are major contributors to pancreatic ductal adenocarcinoma (PDAC) progression through protumor signaling and the generation of fibrosis, the latter of which creates a physical barrier to drugs. CAF inhibition is thus an ideal component of any therapeutic approach for PDAC. SLC7A11 is a cystine transporter that has been identified as a potential therapeutic target in PDAC cells. However, no prior study has evaluated the role of SLC7A11 in PDAC tumor stroma and its prognostic significance. Here we show that high expression of SLC7A11 in human PDAC tumor stroma, but not tumor cells, is independently prognostic of poorer overall survival. Orthogonal approaches showed that PDAC-derived CAFs are highly dependent on SLC7A11 for cystine uptake and glutathione synthesis and that SLC7A11 inhibition significantly decreases CAF proliferation, reduces their resistance to oxidative stress, and inhibits their ability to remodel collagen and support PDAC cell growth. Importantly, specific ablation of SLC7A11 from the tumor compartment of transgenic mouse PDAC tumors did not affect tumor growth, suggesting the stroma can substantially influence PDAC tumor response to SLC7A11 inhibition. In a mouse orthotopic PDAC model utilizing human PDAC cells and CAFs, stable knockdown of SLC7A11 was required in both cell types to reduce tumor growth, metastatic spread, and intratumoral fibrosis, demonstrating the importance of targeting SLC7A11 in both compartments. Finally, treatment with a nanoparticle genesilencing drug against SLC7A11, developed by our laboratory, reduced PDAC tumor growth, incidence of metastases, CAF activation, and fibrosis in orthotopic PDAC tumors. Overall, these findings identify an important role of SLC7A11 in PDAC-derived CAFs in supporting tumor growth.

Original languageEnglish
Pages (from-to)3461-3479
Number of pages19
JournalCancer Research
Volume81
Issue number13
DOIs
Publication statusPublished - 1 Jul 2021

Bibliographical note

Publisher Copyright:
© 2021 American Association for Cancer Research.

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

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