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dc.contributorVall d'Hebron Barcelona Hospital Campus
dc.contributor.authorVoulgarelis, Dimitrios
dc.contributor.authorForment, Josep
dc.contributor.authorPolychronopoulos, Dimitris
dc.contributor.authorCohen-Setton, Jake
dc.contributor.authorBender, Andreas
dc.contributor.authorHerencia Ropero, Andrea
dc.date.accessioned2025-02-03T10:47:38Z
dc.date.available2025-02-03T10:47:38Z
dc.date.issued2024-11-18
dc.identifier.citationVoulgarelis D, Forment JV, Herencia Ropero A, Polychronopoulos D, Cohen-Setton J, Bender A, et al. Understanding tumour growth variability in breast cancer xenograft models identifies PARP inhibition resistance biomarkers. npj Precis Oncol. 2024 Nov 18;8:266.
dc.identifier.issn2397-768X
dc.identifier.urihttps://hdl.handle.net/11351/12515
dc.descriptionTumour growth; Xenograft; PARP inhibition resistance
dc.description.abstractUnderstanding the mechanisms of resistance to PARP inhibitors (PARPi) is a clinical priority, especially in breast cancer. We developed a novel mathematical framework accounting for intrinsic resistance to olaparib, identified by fitting the model to tumour growth metrics from breast cancer patient-derived xenograft (PDX) data. Pre-treatment transcriptomic profiles were used with the calculated resistance to identify baseline biomarkers of resistance, including potential combination targets. The model provided both a classification of responses, as well as a continuous description of resistance, allowing for more robust biomarker associations and capturing the observed variability. Thirty-six resistance gene markers were identified, including multiple homologous recombination repair (HRR) pathway genes. High WEE1 expression was also linked to resistance, highlighting an opportunity for combining PARP and WEE1 inhibitors. This framework facilitates a fully automated way of capturing intrinsic resistance, and accounts for the pharmacological response variability captured within PDX studies and hence provides a precision medicine approach.
dc.language.isoeng
dc.publisherNature Portfolio
dc.relation.ispartofseriesnpj Precision Oncology;8
dc.rightsAttribution-NonCommercial-NoDerivatives 4.0 International
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/
dc.sourceScientia
dc.subjectMama - Càncer - Tractament
dc.subjectEnzims - Inhibidors - Ús terapèutic
dc.subjectResistència als medicaments
dc.subjectMedicaments - Assaigs clínics
dc.subject.meshPoly(ADP-ribose) Polymerase Inhibitors
dc.subject.meshDrug Resistance, Neoplasm
dc.subject.meshXenograft Model Antitumor Assays
dc.subject.meshBreast Neoplasms
dc.subject.mesh/drug therapy
dc.titleUnderstanding tumour growth variability in breast cancer xenograft models identifies PARP inhibition resistance biomarkers
dc.typeinfo:eu-repo/semantics/article
dc.identifier.doi10.1038/s41698-024-00702-x
dc.subject.decsinhibidores de poli(ADP-ribosa) polimerasas
dc.subject.decsresistencia a los antineoplásicos
dc.subject.decsensayos antitumorales por modelo de xenoinjerto
dc.subject.decsneoplasias de la mama
dc.subject.decs/farmacoterapia
dc.relation.publishversionhttps://doi.org/10.1038/s41698-024-00702-x
dc.type.versioninfo:eu-repo/semantics/publishedVersion
dc.audienceProfessionals
dc.contributor.organismesInstitut Català de la Salut
dc.contributor.authoraffiliation[Voulgarelis D] AstraZeneca Postdoc Programme, Cambridge, UK. DMPK Oncology R&D, AstraZeneca, Cambridge, UK. Oncology Data Science, Oncology R&D, AstraZeneca, Cambridge, UK. [Forment JV] Bioscience, Oncology R&D, AstraZeneca, Cambridge, UK. [Herencia Ropero A] Experimental Therapeutics Group, Vall d’Hebron Institute of Oncology (VHIO), Barcelona, Spain. [Polychronopoulos D, Cohen-Setton J] Oncology Data Science, Oncology R&D, AstraZeneca, Cambridge, UK. [Bender A] Clinical Pharmacology & Safety Sciences, AstraZeneca, Cambridge, UK. Centre for Molecular Informatics, Department of Chemistry, University of Cambridge, Cambridge, UK
dc.identifier.pmid39558144
dc.rights.accessrightsinfo:eu-repo/semantics/openAccess


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