Plasma shallow whole-genome sequencing profiling in patients with <i> RAS <sup>WT</sup> </i> metastatic colorectal cancer (mCRC) undergoing first-line anti-EGFR therapy.
Abstract
214 Background: Acquired resistance (AR) to first-line (1L) chemotherapy (CT) + anti-EGFR inhibitors is a major challenge in the management of RAS WT mCRC patients (pts). While AR in later lines has been explained with point mutations in the EGFR pathway, its real mechanisms in 1L remain poorly understood. Tumor molecular biology can be dynamically studied through circulating tumor DNA (ctDNA) analysis, a real-time, non-invasive approach to detect AR. In this context, we conducted the multicenter prospective PLATFORM-B study, which enrolled 100 RAS WT mCRC pts receiving 1L CT + cetuximab across 15 Spanish Medical Oncology Departments, alongside 30 RAS MUT pts (control) treated with 1L CT + bevacizumab. Peripheral blood samples have been collected at baseline (BL), week 8, and disease progression (PD). Next-generation sequencing analysis (Ion S5 system) of ctDNA at PD revealed AR mutations in only 10% of pts, suggesting that alterations in the EGFR pathway may only partially explain AR in 1L. Therefore, we conducted shallow whole-genome sequencing (shWGS) to further characterize genomic profiles possibly related with novel mechanisms of AR. Methods: Baseline and PD samples with sufficient remaining plasma were considered for this analysis. shWGS was performed with a coverage ranging 0.5X to 2.0X and analyzed using ichorCNA pipeline to evaluate various genomic characteristics such as copy number alterations (CNA), tumor fraction (TF), subclonal fraction (SF), and ploidy. Molecular results were correlated to clinical-pathological features and outcomes. Results: Overall, 35 mCRC pts (27 RAS WT and 8 RAS MUT ) were included in the study. At BL ( N = 26), median TF (mTF) was 0.19, median ploidy 2, median SC fraction 0.5, median SC genome fraction 0.21, and median subclonal CNA fraction 0.41. At PD ( N = 33), mTF was 0.08, median ploidy 2, median SC fraction 0.5, median SC genome fraction 0.17, and median subclonal CNA fraction 0.38. Of all the features analyzed, only the TF showed potential prognostic value. At BL, pts with TF levels above the median had poorer overall survival (OS) compared to those with lower levels, approaching statistical significance ( P = .055). At PD, higher TF levels were statistically significantly associated with worse OS ( P = .02). No meaningful differences between the RAS WT and RAS MUT groups were observed. Specific variations in CNA, TF, SF, or ploidy under treatment are being correlated to clinical data to seek for predictive value. Conclusions: This preliminary analysis of the PLATFORM-B using shWGS showed the prognostic value of TF. Further analyses are undergoing to better understand the molecular landscape of acquired resistance to 1L anti-EGFR-based therapy in RAS WT mCRC pts.
Article Details
Journal Info
Journal of Clinical Oncology
Lippincott Williams & Wilkins
Authors (20)
Valentino Martelli
Joana Vidal Barrull
Hospital del Mar Research Institute, Barcelona, Spain
Concepción Fernández-Rodríguez
Hospital del Mar Research Institute, Barcelona, Spain
Joan Gibert
Cancer Research Program, Hospital del Mar Research Institute
Ana Moreno
Aya Louhamane
Vall d’Hebron University Hospital and Institute of Oncology (VHIO), Spain, Barcelona, Spain
Jenniffer Linares-Aceituno
Department of Medical Oncology, Hospital del Mar, Cancer Research Program, HMRIB Hospital del Mar Research Institute, Barcelona, Spain
Pilar García-Alfonso
Medical Oncology Department, Hospital Universitario Gregorio Marañón, Madrid, Spain
David Paez
Medical Oncology Department, Hospital de la Santa Creu i Sant Pau, Barcelona, Spain
Vicente Alonso
Hospital Universitario Miguel Servet. Instituto de Investigación Sanitaria de Aragón (IISA), Zaragoza, Spain
Maria Auxiliadora Gomez Espana
Department of Medical Oncology, Reina Sofía University Hospital, University of Córdoba, CIBERONC, Córdoba, Spain
Cristina Santos
Laboratory of Cancer Metabolism, ONCOBELL Program, Bellvitge Biomedical Research Institute
Gema Durán
Hospital Universitario Regional y Virgen de la Victoria, Malaga, Spain
Elena Elez
Vall d’Hebron Hospital Campus, Barcelona
Beatriz Bellosillo Paricio
Hospital del Mar Research Institute, Barcelona, Spain
Josep Tabernero
Vall d’Hebron Hospital Campus, Barcelona
Ramón Salazar
Laboratory of Cancer Metabolism, ONCOBELL Program, Bellvitge Biomedical Research Institute
Enrique Aranda
Rodrigo A Toledo
Vall d’Hebron University Hospital and Institute of Oncology (VHIO), Barcelona, Spain
Clara O. Montagut
Department of Medical Oncology, Hospital del Mar, Cancer Research Program, HMRIB Hospital del Mar Research Institute, Pompeu Fabra University, Instituto de Salud Carlos III, CIBERONC, Barcelona, Spain