Inhibition of Hedgehog Signaling Alters Fibroblast Composition in Pancreatic Cancer

Nina G. Steele(University of Michigan), Giulia Biffi(Cold Spring Harbor Laboratory), Samantha B. Kemp(University of Michigan), Yaqing Zhang(University of Michigan), Donovan Drouillard(University of Michigan), Li-Jyun Syu(University of Michigan), Hao Yuan(Cold Spring Harbor Laboratory), Tobiloba E. Oni(Cold Spring Harbor Laboratory), Erin Brosnan(Cold Spring Harbor Laboratory), Ela Elyada(Cold Spring Harbor Laboratory), Abhishek Doshi(Cold Spring Harbor Laboratory), Christa Hansma(University of Michigan), Carlos E. Espinoza(University of Michigan), Ahmed Abbas(University of Michigan), Stephanie The(University of Michigan), Valerie Irizarry-Negron(University of Michigan), Christopher J. Halbrook(University of Michigan), Nicole E. Franks(University of Michigan), Megan T. Hoffman(University of Michigan), Kristee Brown(University of Michigan), Eileen S. Carpenter(University of Michigan), Zeribe C. Nwosu(University of Michigan), Craig Johnson(University of Michigan), Fatima Lima(University of Michigan), Michelle A. Anderson(University of Michigan), Youngkyu Park(Cold Spring Harbor Laboratory), Howard C. Crawford(University of Michigan), Costas A. Lyssiotis(University of Michigan), Timothy L. Frankel(University of Michigan), Arvind Rao(University of Michigan), Filip Bednar(University of Michigan), Andrzej A. Dlugosz(University of Michigan), Jonathan Preall(Cold Spring Harbor Laboratory), David A. Tuveson(Cold Spring Harbor Laboratory), Benjamin L. Allen(University of Michigan), Marina Pasca di Magliano(University of Michigan)
Clinical Cancer Research
January 25, 2021
Cited by 272Open Access
Full Text

Abstract

PURPOSE: Pancreatic ductal adenocarcinoma (PDAC) is a deadly disease characterized by an extensive fibroinflammatory stroma, which includes abundant cancer-associated fibroblast (CAF) populations. PDAC CAFs are heterogeneous, but the nature of this heterogeneity is incompletely understood. The Hedgehog pathway functions in PDAC in a paracrine manner, with ligands secreted by cancer cells signaling to stromal cells in the microenvironment. Previous reports investigating the role of Hedgehog signaling in PDAC have been contradictory, with Hedgehog signaling alternately proposed to promote or restrict tumor growth. In light of the newly discovered CAF heterogeneity, we investigated how Hedgehog pathway inhibition reprograms the PDAC microenvironment. EXPERIMENTAL DESIGN: We used a combination of pharmacologic inhibition, gain- and loss-of-function genetic experiments, cytometry by time-of-flight, and single-cell RNA sequencing to study the roles of Hedgehog signaling in PDAC. RESULTS: We found that Hedgehog signaling is uniquely activated in fibroblasts and differentially elevated in myofibroblastic CAFs (myCAF) compared with inflammatory CAFs (iCAF). Sonic Hedgehog overexpression promotes tumor growth, while Hedgehog pathway inhibition with the smoothened antagonist, LDE225, impairs tumor growth. Furthermore, Hedgehog pathway inhibition reduces myCAF numbers and increases iCAF numbers, which correlates with a decrease in cytotoxic T cells and an expansion in regulatory T cells, consistent with increased immunosuppression. CONCLUSIONS: Hedgehog pathway inhibition alters fibroblast composition and immune infiltration in the pancreatic cancer microenvironment.


Related Papers

No related papers found

Powered by citation graph analysis