Abstract 3664
Background
Aberrant methylation changes are present in nearly all cancers. The goal of this study was to determine if changes in cfDNA methylation patterns during the course of treatment could predict non-response prior to routine imaging.
Methods
We prospectively collected clinical data and blood from 52 patients with advanced malignancies (25 lung, 11 breast, 16 other). Blood was drawn prior to start of a new treatment, after first cycle (median 23 days), and/or second cycle (median 43 days). We performed whole-genome (WG) bisulfite sequencing (median depth 18X) on plasma cfDNA to determine methylation levels. By tracking how methylation levels change across 19,710 regions throughout the genome, from baseline to subsequent timepoints, we classified patients as either progressors or non-progressors. Treatment response at first follow-up imaging (FUI) was determined by RECIST 1.1 or clinical assessment. Study endpoints were agreement with first FUI and progression-free survival (PFS) by cfDNA classification.
Results
The cohort consisted of 58% females and the median age was 71. Main treatment regimens were immuno- (22), chemo- (20), targeted- (7) or endocrine therapy (3). PFS was significantly shorter (log-rank p = 0.003) in patients classified as progressors by cfDNA (N = 10; median: 90 days) compared to non-progressors (42, median: 263 days). 6 out of 10 patients classified as cfDNA progressors were later confirmed to progress at first follow-up evaluation (60% positive predictive value). The cfDNA assay for these 6 patients preceded imaging and clinical evaluation by a median of 40 days. For the remaining patients, 39 of 42 did not progress (93% negative predictive value). Thus, sensitivity for the assay for identifying progression was 67% and specificity was 91%.
Conclusions
Our results show that WG cfDNA methylation change is a novel cancer signature with potential to identify patients whose treatment regimen is ineffective prior to imaging, and allow switching to a more effective alternative at an earlier time. Moreover, integrating methylation-based changes with information about genomic alterations may increase performance of cfDNA-based response monitoring.
Clinical trial identification
Editorial acknowledgement
Legal entity responsible for the study
The authors.
Funding
Lexent Bio, Inc.
Disclosure
A.A. Davis: Travel / Accommodation / Expenses: Menarini Silicon Biosystems. W. Iams: Travel / Accommodation / Expenses, Clinical Trials Visit: EMD Serono. R. Srivas: Shareholder / Stockholder / Stock options, Full / Part-time employment: Lexent Bio, Inc. N. Lambert: Shareholder / Stockholder / Stock options, Full / Part-time employment: Lexent Bio, Inc.; Shareholder / Stockholder / Stock options: Sequenom. A. Robertson: Shareholder / Stockholder / Stock options, Full / Part-time employment: Lexent Bio, Inc.; Full / Part-time employment, Prior employment: Color Genomics; Shareholder / Stockholder / Stock options, 2015-2018: Counsyl. N. Peterman: Shareholder / Stockholder / Stock options, Full / Part-time employment: Lexent Bio, Inc. A. Shah: Full / Part-time employment: Lexent Bio, Inc.; Shareholder / Stockholder / Stock options: Myriad. T. Wilson: Shareholder / Stockholder / Stock options, Full / Part-time employment: Lexent Bio, Inc.; Shareholder / Stockholder / Stock options, Full / Part-time employment, Prior employment: Illumina; Shareholder / Stockholder / Stock options: Counsyl; Licensing / Royalties: Gen-Probe. J. Close: Full / Part-time employment: Lexent Bio, Inc. P. George: Shareholder / Stockholder / Stock options, Full / Part-time employment: Lexent Bio, Inc.; Shareholder / Stockholder / Stock options: Hologic. H. Wood: Shareholder / Stockholder / Stock options, Full / Part-time employment: Lexent Bio, Inc. B. Wong: Shareholder / Stockholder / Stock options, Full / Part-time employment: Lexent Bio, Inc. A. Tezcan: Shareholder / Stockholder / Stock options, Full / Part-time employment: Lexent Bio, Inc. J.C. Spinosa: Shareholder / Stockholder / Stock options, Full / Part-time employment: Lexent Bio, Inc.; Full / Part-time employment: San Diego Blood Bank; Advisory / Consultancy: Gestalt Diagnostics; Advisory / Consultancy: SonicHealthUSA. H. Tezcan: Leadership role, Shareholder / Stockholder / Stock options, Full / Part-time employment: Lexent Bio, Inc.; Shareholder / Stockholder / Stock options, 2015-2018: Counsyl. Y.K. Chae: Advisory / Consultancy: Foundation Medicine; Advisory / Consultancy: Boehringer Ingelheim; Advisory / Consultancy, Research grant / Funding (institution): Biodesix; Advisory / Consultancy: Counsyl; Advisory / Consultancy, Speaker Bureau / Expert testimony: AstraZeneca; Advisory / Consultancy: Guardant Health; Advisory / Consultancy: Takeda; Advisory / Consultancy, Speaker Bureau / Expert testimony: Genentech; Advisory / Consultancy: ImmuneOncia; Advisory / Consultancy: Hanmi; Speaker Bureau / Expert testimony: Merck; Speaker Bureau / Expert testimony: Eli Lilly; Research grant / Funding (institution): Abbvie; Research grant / Funding (institution): Bristol-Myers Squibb; Research grant / Funding (institution): Lexent Bio; Research grant / Funding (institution): Freenome. All other authors have declared no conflicts of interest.
Resources from the same session
3523 - Results of a global external quality assessment scheme for EGFR testing on liquid biopsy
Presenter: Nicola Normanno
Session: Poster Display session 3
Resources:
Abstract
3295 - Clinical impact of plasma Next-Generation Sequencing (NGS) in advanced Non-small cell lung cancer (aNSCLC)
Presenter: Laura Bonanno
Session: Poster Display session 3
Resources:
Abstract
5632 - Feasibility study of a ctEGFR prototype assay on the fully automated Idylla™ platform
Presenter: Martin Reijans
Session: Poster Display session 3
Resources:
Abstract
3614 - Enhanced Access to EGFR Molecular Testing in NSCLC using a Cell-Free DNA Tube for Liquid Biopsy
Presenter: Theresa May
Session: Poster Display session 3
Resources:
Abstract
5664 - Analysis of circulating tumor DNA in paired plasma and sputum samples of EGFR-mutated NSCLC patients
Presenter: Christina Grech
Session: Poster Display session 3
Resources:
Abstract
4945 - Liquid biopsy and Array Comparative Genomic Hybridization (aCGH)
Presenter: Panagiotis Apostolou
Session: Poster Display session 3
Resources:
Abstract
5746 - Next-generation sequencing panel verification to detect low frequency single nucleotide and copy number variants from mixing cell line studies
Presenter: Rocio Rosas-Alonso
Session: Poster Display session 3
Resources:
Abstract
5901 - Automated rarefaction analysis for precision B and T cell receptor repertoire profiling from peripheral blood and FFPE-preserved tumor
Presenter: Luca Quagliata
Session: Poster Display session 3
Resources:
Abstract
2027 - A Heptamethine cyanine dye is a potential diagnostic marker for Myeloid-Derived Suppressor Cells
Presenter: Chaeyong Jung
Session: Poster Display session 3
Resources:
Abstract
5517 - Molecular fingerprinting in breast cancer (BC) screening using Quantum Optics (QO) technology combined with an artificial intelligence (AI) approach applying the concept of “molecular profiles at n variables (MPnV)”: a prospective pilot study.
Presenter: Jean-Marc Nabholtz
Session: Poster Display session 3
Resources:
Abstract