Disease characterization in liquid biopsy from HER2-mutated, non-amplified metastatic breast cancer patients treated with neratinib

Author:

Shishido Stephanie N.,Masson RahulORCID,Xu LiyaORCID,Welter LisaORCID,Prabakar Rishvanth Kaliappan,D’ Souza Anishka,Spicer Darcy,Kang Irene,Jayachandran Priya,Hicks JamesORCID,Lu Janice,Kuhn PeterORCID

Abstract

AbstractMetastatic breast cancer (mBC) patients have a high risk of progression and face poor prognosis overall, with about one third (34%) surviving five years or more. In rare instances (2–4% of cases) patients with mBC have ERBB2 (HER2) activating mutations but are ERBB2 non-amplified. Neratinib is a potent, irreversible inhibitor that binds HER2 and inhibits downstream signaling. We used the previously validated high-definition single cell assay (HDSCA) workflow to investigate the clinical significance of the liquid biopsy in ERBB2 mutant, non-amplified, post-menopausal mBC patients starting neratinib and fulvestrant combination therapy. Characterization with a comprehensive liquid biopsy methodology (HDSCA) included genomic analysis of both the cell-free DNA (cfDNA) and single circulating tumor cells (CTCs) to monitor tumor evolution and identify potential mutational variants unique to the patient’s clinical response. A limited series of five sequentially enrolled patients presented here were from the MutHER (https://www.clinicaltrials.gov, NCT01670877) or SUMMIT (https://www.clinicaltrials.gov, NCT01953926) trials. Patients had an average of 5.4 lines of therapy before enrollment, variable hormone receptor status, and ERBB2 mutations at diagnosis and during treatment. CTC enumeration alone was not sufficient to predict clinical response. Treatment pressure was shown to lead to an observable change in CTC morphology and genomic instability (GI), suggesting these parameters may inform prognosis. Single cell copy number alteration (CNA) analysis indicated that the persistence or development of a clonal population of CTCs during treatment was associated with a worse response. Hierarchical clustering analysis of the single cells across all patients and timepoints identified distinct aberrant regions shared among patients, comprised of 26 genes that are similarly affected and may be related to drug resistance. Additionally, the genomic analysis of the cfDNA, identified new mutations in ERBB2, PIK3CA, and TP53 that arose likely due to treatment pressure in a patient with poor response, further providing insights on the dynamics of the cancer genome over the course of therapy. The data presented in this small cohort study demonstrates the feasibility of real-time molecular profiling of the cellular and acellular fractions of the liquid biopsy using the HDSCA methodology. Additional studies are necessary to determine the potential use of morphometric and genomic analysis as a prognostic tool to advance personalized oncology.

Funder

Breast Cancer Research Foundation (BCRF-20-089) Vassiliadis Research Fund Cheryl and Anthony Faillace Research Fund

Kalayil and Leela Chacko, M.D. Fellowship

USC Dornsife Student Opportunities for Academic Research Fellowship; USC Rose Hills Foundation Summer Science and Engineering Fellowship; USC Provost Research Fellowship

Alan Joseph Endowed Fellowship

U.S. Department of Health & Human Services | NIH | National Cancer Institute

Breast Cancer Research Foundation

Publisher

Springer Science and Business Media LLC

Subject

Pharmacology (medical),Radiology, Nuclear Medicine and imaging,Oncology

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