Leukocyte Heterogeneity in Pancreatic Ductal Adenocarcinoma: Phenotypic and Spatial Features Associated with Clinical Outcome

Shannon M. Liudahl(Oregon Health & Science University), Courtney B. Betts(Oregon Health & Science University), Shamilene Sivagnanam(Oregon Health & Science University), Vicente Morales‐Oyarvide(Dana-Farber Cancer Institute), Annacarolina da Silva(Dana-Farber Cancer Institute), Chen Yuan(Dana-Farber Cancer Institute), Samuel Hwang(Oregon Health & Science University), Alison Grossblatt-Wait(Oregon Health & Science University), Kenna R. Leis(Oregon Health & Science University), William D. Larson(Oregon Health & Science University), Meghan B. Lavoie(Oregon Health & Science University), Padraic Robinson(Oregon Health & Science University), Andressa Dias Costa(Dana-Farber Cancer Institute), Sara A. Väyrynen(Dana-Farber Cancer Institute), Thomas E. Clancy(Brigham and Women's Hospital), Douglas A. Rubinson(Dana-Farber Cancer Institute), Jason M. Link(Oregon Health & Science University), Dove Keith(Oregon Health & Science University), Wesley Horton(Oregon Health & Science University), Margaret A. Tempero(UCSF Helen Diller Family Comprehensive Cancer Center), Robert H. Vonderheide(University of Pennsylvania), Elizabeth M. Jaffee(Sidney Kimmel Comprehensive Cancer Center), Brett C. Sheppard(Oregon Health & Science University), Jeremy Goecks(Oregon Health & Science University), Rosalie C. Sears(Oregon Health & Science University), Byung Park(Oregon Health & Science University), Motomi Mori(Oregon Health & Science University), Jonathan A. Nowak(Brigham and Women's Hospital), Brian M. Wolpin(Dana-Farber Cancer Institute), Lisa M. Coussens(Oregon Health & Science University)
Cancer Discovery
March 16, 2021
Cited by 161Open Access
Full Text

Abstract

Abstract Immunotherapies targeting aspects of T cell functionality are efficacious in many solid tumors, but pancreatic ductal adenocarcinoma (PDAC) remains refractory to these treatments. Deeper understanding of the PDAC immune ecosystem is needed to identify additional therapeutic targets and predictive biomarkers for therapeutic response and resistance monitoring. To address these needs, we quantitatively evaluated leukocyte contexture in 135 human PDACs at single-cell resolution by profiling density and spatial distribution of myeloid and lymphoid cells within histopathologically defined regions of surgical resections from treatment-naive and presurgically (neoadjuvant)–treated patients and biopsy specimens from metastatic PDAC. Resultant data establish an immune atlas of PDAC heterogeneity, identify leukocyte features correlating with clinical outcomes, and, through an in silico study, provide guidance for use of PDAC tissue microarrays to optimally measure intratumoral immune heterogeneity. Atlas data have direct applicability as a reference for evaluating immune responses to investigational neoadjuvant PDAC therapeutics where pretherapy baseline specimens are not available. Significance: We provide a phenotypic and spatial immune atlas of human PDAC identifying leukocyte composition at steady state and following standard neoadjuvant therapies. These data have broad utility as a resource that can inform on leukocyte responses to emerging therapies where baseline tissues were not acquired. This article is highlighted in the In This Issue feature, p. 1861


Related Papers

No related papers found

Powered by citation graph analysis