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Microenvironment drives cell state, plasticity, and drug response in pancreatic cancer

Authors :
Srivatsan Raghavan
Peter S. Winter
Andrew W. Navia
Hannah L. Williams
Alan DenAdel
Kristen E. Lowder
Jennyfer Galvez-Reyes
Radha L. Kalekar
Nolawit Mulugeta
Kevin S. Kapner
Manisha S. Raghavan
Ashir A. Borah
Nuo Liu
Sara A. Väyrynen
Andressa Dias Costa
Raymond W.S. Ng
Junning Wang
Emma K. Hill
Dorisanne Y. Ragon
Lauren K. Brais
Alex M. Jaeger
Liam F. Spurr
Yvonne Y. Li
Andrew D. Cherniack
Matthew A. Booker
Elizabeth F. Cohen
Michael Y. Tolstorukov
Isaac Wakiro
Asaf Rotem
Bruce E. Johnson
James M. McFarland
Ewa T. Sicinska
Tyler E. Jacks
Ryan J. Sullivan
Geoffrey I. Shapiro
Thomas E. Clancy
Kimberly Perez
Douglas A. Rubinson
Kimmie Ng
James M. Cleary
Lorin Crawford
Scott R. Manalis
Jonathan A. Nowak
Brian M. Wolpin
William C. Hahn
Andrew J. Aguirre
Alex K. Shalek
Source :
Cell. 184:6119-6137.e26
Publication Year :
2021
Publisher :
Elsevier BV, 2021.

Abstract

Prognostically relevant RNA expression states exist in pancreatic ductal adenocarcinoma (PDAC), but our understanding of their drivers, stability, and relationship to therapeutic response is limited. To examine these attributes systematically, we profiled metastatic biopsies and matched organoid models at single-cell resolution. In vivo, we identify a new intermediate PDAC transcriptional cell state and uncover distinct site- and state-specific tumor microenvironments (TMEs). Benchmarking models against this reference map, we reveal strong culture-specific biases in cancer cell transcriptional state representation driven by altered TME signals. We restore expression state heterogeneity by adding back in vivo-relevant factors and show plasticity in culture models. Further, we prove that non-genetic modulation of cell state can strongly influence drug responses, uncovering state-specific vulnerabilities. This work provides a broadly applicable framework for aligning cell states across in vivo and ex vivo settings, identifying drivers of transcriptional plasticity and manipulating cell state to target associated vulnerabilities.

Details

ISSN :
00928674
Volume :
184
Database :
OpenAIRE
Journal :
Cell
Accession number :
edsair.doi.dedup.....9fd273b2629d5e67001a6dfb5f7f3d83