Tumor Explants Elucidate a Cascade of Paracrine SHH, WNT, and VEGF Signals Driving Pancreatic Cancer Angiosuppression

Author:

Hasselluhn Marie C.12ORCID,Decker-Farrell Amanda R.12ORCID,Vlahos Lukas23ORCID,Thomas Dafydd H.4ORCID,Curiel-Garcia Alvaro12ORCID,Maurer H. Carlo5ORCID,Wasko Urszula N.12ORCID,Tomassoni Lorenzo23ORCID,Sastra Stephen A.12ORCID,Palermo Carmine F.12ORCID,Dalton Tanner C.12ORCID,Ma Alice12ORCID,Li Fangda12ORCID,Tolosa Ezequiel J.6ORCID,Hibshoosh Hanina27ORCID,Fernandez-Zapico Martin E.6ORCID,Muir Alexander8ORCID,Califano Andrea2391011ORCID,Olive Kenneth P.12ORCID

Affiliation:

1. 1Department of Medicine, Division of Digestive and Liver Diseases, Vagelos College of Physicians and Surgeons, Columbia University Irving Medical Center, New York, New York.

2. 2Herbert Irving Comprehensive Cancer Center, Columbia University Irving Medical Center, New York, New York.

3. 3Department of Systems Biology, Columbia University Irving Medical Center, New York, New York.

4. 4QuantX Biosciences, Princeton, New Jersey.

5. 5Department of Internal Medicine II, Klinikum Rechts der Isar, School of Medicine, Technical University of Munich, Germany.

6. 6Schulze Center for Novel Therapeutics, Division of Oncology Research, Mayo Clinic, Rochester, Minnesota.

7. 7Department of Pathology, Columbia University Irving Medical Center, New York, New York.

8. 8Ben May Department for Cancer Research, University of Chicago, Chicago, Illinois.

9. 9J.P. Sulzberger Columbia Genome Center, Columbia University, New York, New York.

10. 10Department of Biomedical Informatics, Columbia University, New York, New York.

11. 11Department of Biochemistry and Molecular Biophysics, Columbia University, New York, New York.

Abstract

Abstract The sparse vascularity of pancreatic ductal adenocarcinoma (PDAC) presents a mystery: What prevents this aggressive malignancy from undergoing neoangiogenesis to counteract hypoxia and better support growth? An incidental finding from prior work on paracrine communication between malignant PDAC cells and fibroblasts revealed that inhibition of the Hedgehog (HH) pathway partially relieved angiosuppression, increasing tumor vascularity through unknown mechanisms. Initial efforts to study this phenotype were hindered by difficulties replicating the complex interactions of multiple cell types in vitro. Here we identify a cascade of paracrine signals between multiple cell types that act sequentially to suppress angiogenesis in PDAC. Malignant epithelial cells promote HH signaling in fibroblasts, leading to inhibition of noncanonical WNT signaling in fibroblasts and epithelial cells, thereby limiting VEGFR2-dependent activation of endothelial hypersprouting. This cascade was elucidated using human and murine PDAC explant models, which effectively retain the complex cellular interactions of native tumor tissues. Significance: We present a key mechanism of tumor angiosuppression, a process that sculpts the physiologic, cellular, and metabolic environment of PDAC. We further present a computational and experimental framework for the dissection of complex signaling cascades that propagate among multiple cell types in the tissue environment.

Publisher

American Association for Cancer Research (AACR)

Subject

Oncology

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