| Literature DB >> 35191482 |
Borja Ruiz-Fernández de Córdoba1, Haritz Moreno1, Fernando Lecanda1,2,3,4, Rafael Martínez-Monge2,5,6, Karmele Valencia1,7,2, Naiara Perurena1, Pablo Ruedas1, Thomas Walle1, Alberto Pezonaga-Torres1, Juan Hinojosa1, Elisabet Guruceaga8, Antonio Pineda-Lucena9, Marta Abengózar-Muela10, Denis Cochonneau11,12, Carolina Zandueta1, Susana Martínez-Canarias1, Álvaro Teijeira13, Daniel Ajona1,7,2,3, Sergio Ortiz-Espinosa1,7, Xabier Morales14, Carlos Ortiz de Solórzano14, Marta Santisteban5, Luis I Ramos-García6, Laura Guembe15, Vratislav Strnad16, Dominique Heymann11,12,17, Sandra Hervás-Stubbs13, Rubén Pío1,7,2,3, María E Rodríguez-Ruiz13,6, Carlos E de Andrea10, Silvestre Vicent1,2,3,4, Ignacio Melero2,3,5,4.
Abstract
ABSTRACT: Locoregional failure (LRF) in patients with breast cancer post-surgery and post-irradiation is linked to a dismal prognosis. In a refined new model, we identified ectonucleotide pyrophosphatase/phosphodiesterase 1/CD203a (ENPP1) to be closely associated with LRF. ENPP1hi circulating tumor cells (CTC) contribute to relapse by a self-seeding mechanism. This process requires the infiltration of polymorphonuclear myeloid-derived suppressor cells and neutrophil extracellular trap (NET) formation. Genetic and pharmacologic ENPP1 inhibition or NET blockade extends relapse-free survival. Furthermore, in combination with fractionated irradiation, ENPP1 abrogation obliterates LRF. Mechanistically, ENPP1-generated adenosinergic metabolites enhance haptoglobin (HP) expression. This inflammatory mediator elicits myeloid invasiveness and promotes NET formation. Accordingly, a significant increase in ENPP1 and NET formation is detected in relapsed human breast cancer tumors. Moreover, high ENPP1 or HP levels are associated with poor prognosis. These findings unveil the ENPP1/HP axis as an unanticipated mechanism exploited by tumor cells linking inflammation to immune remodeling favoring local relapse. SIGNIFICANCE: CTC exploit the ENPP1/HP axis to promote local recurrence post-surgery and post-irradiation by subduing myeloid suppressor cells in breast tumors. Blocking this axis impairs tumor engraftment, impedes immunosuppression, and obliterates NET formation, unveiling new opportunities for therapeutic intervention to eradicate local relapse and ameliorate patient survival. This article is highlighted in the In This Issue feature, p. 1171. ©2022 The Authors; Published by the American Association for Cancer Research.Entities:
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Year: 2022 PMID: 35191482 PMCID: PMC7612709 DOI: 10.1158/2159-8290.CD-21-0932
Source DB: PubMed Journal: Cancer Discov ISSN: 2159-8274 Impact factor: 38.272