Accès ouvert déclaré
2020
article
Targeting DNA Damage Response and Replication Stress in Pancreatic Cancer
Stephan B. Dreyer, Rosanna Upstill‐Goddard, Viola Paulus-Hock, Clara Paris, Eirini-Maria Lampraki, Eloise V. Dray, Bryan Serrels, Giuseppina Caligiuri, Selma Rebus, Dennis Plenker, Zachary Galluzzo, Holly Brunton, Richard N. Cunningham, Mathias Tesson, Ulla‐Maja Bailey, Marc D. Jones, Kim Moran‐Jones, Derek Wright, Fraser R. Duthie, Karin A. Oien, Lisa Evers, Colin J. McKay, Grant A. McGregor, Aditi Gulati, Rachel Brough, Ilirjana Bajrami, Stephan Pettitt, Michele L. Dziubinski, Juliana B. Candido, Frances R. Balkwill, Simon T. Barry, Robert Grützmann, Lola Rahib, Sarah J. Allison, Peter J. Bailey, Dario Beraldi, Euan J. Cameron, David Kuang-Fu Chang, Susanna L. Cooke, Paul Grimwood, Shane Kelly, John Lindsay Marshall, Sancha Martin, Brian McDade, Daniel L. McElroy, Craig Nourse, Donna Ramsay, Jane Hair, Nigel Balfour Jamieson, Paul Westwood, Nicola C. Williams, Amber L. Johns, Amanda Mawson, Christopher James Scarlett, Mary-Anne L. Brancato, Sarah J. Rowe, Skye H. Simpson, Mona Martyn-Smith, Michelle T. Thomas, Lorraine A. Chantrill, Venessa Chin, Angela S. Y. Chou, Mark J. Cowley, Jeremy L. Humphris, R. Scott Mead, Adnan M. Nagrial, Marina Pajic, Jessica Pettit, Mark Pinese, Ilse Rooman, Jianmin Wu, Tao Jiang, Renee DiPietro, Clare Watson, Angela M. Steinmann, Hong Ching Lee, Rachel Wong, Andreia V. Pinho, Marc Giry-Laterrière, Roger J. Daly, Elizabeth A. Musgrove, Robert L. Sutherland, Sean Michael Grimmond, Nicola Waddell, Karin S. Kassahn, David K. Miller, Peter J. Wilson, Ann-Marie Patch, Sarah Song, Ivon Harliwong, Senel Idrisoglu, Ehsan Nourbakhsh, Suzanne S. Manning, Shivangi Wani, Milena Gongora, Matthew J. J. Anderson, Oliver Holmes, Conrad Leonard, Darrin F. Taylor, Scott Wood, Christina Xu, Kátia Nones, J. Lynn Fink, Angelika N. Christ, Tim Bruxner, Nicole Cloonan, Felicity Newell, John V. Pearson, Michael C. J. Quinn, Shivashankar Hiriyur Nagaraj, Stephen H. Kazakoff, Nick M. Waddell, Keerthana Krisnan, Kelly Quek, David Wood, Jaswinder Singh Samra, Anthony James Gill, Nick Pavlakis, Alex D. Guminski, Christopher W. Toon, Ray Asghari, Neil Donald Merrett, Darren A. Pavey, Amitabha Das, Peter H. Cosman, Kasim Ismail, Chelsie O’Connnor, Vincent W. T. Lam, Duncan J. McLeod, Henry C. C. Pleass, A. J. Richardson, Virginia James, James G. Kench, Caroline Louise Cooper, David John Joseph, Charbel Sandroussi, Michael Crawford, James Gallagher, Michael Texler, Cindy Forest, Andrew Laycock, Krishna P. Epari, Mo Ballal, David R Fletcher, Sanjay Mukhedkar, Nigel A. Spry, Bastiaan DeBoer, Ming G. Chai, Nikolajs Zeps, Maria Beilin, Kynan Feeney, Nan Q. Nguyen, Andrew R. Ruszkiewicz, Chris S. Worthley, Chuan Ping Tan, Tamara Debrencini, John Li Chen, Mark E. Brooke‐Smith, Virginia Papangelis, Henry H. K. Tang, Andrew P. Barbour, Andrew Donald Clouston, Patrick P. Martin, Thomas J. O’Rourke, Amy Chiang, Jonathan W. Fawcett, Kellee Slater, Shinn Yeung, Michael Hatzifotis, Peter Hodgkinson, Christopher Christophi, Mehrdad Nikfarjam, Angela Mountain, Victorian Cancer Biobank, James R. Eshleman, Ralph H. Hruban, Anirban Maitra, Christine A. Iacobuzio–Donahue, Richard David Schulick, Christopher Lee Wolfgang, Richard A. Morgan, Mary B. Hodgin, Aldo Scarpa, Rita Teresa Lawlor, Stefania Beghelli, Vincenzo Corbo, Maria Scardoni, Claudio Bassi, Margaret A. Tempero, Fieke E. M. Froeling, Gloria M. Petersen, Alan Ashworth, Margaret C. Frame, Howard C. Crawford, Diane M. Simeone, Chris J. Lord, Debabrata Mukhopadhyay, Christian P. Pilarsky, David Arthur Tuveson, Jennifer P. Morton, Owen James Sansom, Andrew Victor Biankin
178Citations signalées, ce qui n’est pas une note de qualité
33Institutions déclarées
5Pays d’affiliation déclarés
Rattachement africain : gb, fr, us, de, au.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
BACKGROUND & AIMS: Continuing recalcitrance to therapy cements pancreatic cancer (PC) as the most lethal malignancy, which is set to become the second leading cause of cancer death in our society. The study aim was to investigate the association between DNA damage response (DDR), replication stress, and novel therapeutic response in PC to develop a biomarker-driven therapeutic strategy targeting DDR and replication stress in PC. METHODS: We interrogated the transcriptome, genome, proteome, and functional characteristics of 61 novel PC patient-derived cell lines to define novel therapeutic strategies targeting DDR and replication stress. Validation was done in patient-derived xenografts and human PC organoids. RESULTS: Patient-derived cell lines faithfully recapitulate the epithelial component of pancreatic tumors, including previously described molecular subtypes. Biomarkers of DDR deficiency, including a novel signature of homologous recombination deficiency, cosegregates with response to platinum (P < .001) and PARP inhibitor therapy (P < .001) in vitro and in vivo. We generated a novel signature of replication stress that predicts response to ATR (P < .018) and WEE1 inhibitor (P < .029) treatment in both cell lines and human PC organoids. Replication stress was enriched in the squamous subtype of PC (P < .001) but was not associated with DDR deficiency. CONCLUSIONS: Replication stress and DDR deficiency are independent of each other, creating opportunities for therapy in DDR-proficient PC and after platinum therapy.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Targeting DNA Damage Response and Replication Stress in Pancreatic Cancer
- Date Crossref
- 01/01/2021
- Éditeur
- Elsevier BV
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Les institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
DNA Repair MechanismsPARP inhibition in cancer therapyCancer therapeutics and mechanisms