Abstract 5141
Background
SCLC is an aggressive disease with poor prognosis. Despite initial response to chemotherapy and radiotherapy, relapse occurs in most cases. To characterize genomic changes in SCLC over the course of therapy, we explored tracking tumor mutations in cell-free DNA (cfDNA) across post-treatment blood draws and comparing them to pre-treatment plasma and tissue profiles.
Methods
We retrospectively evaluated 235 samples collected from 24 subjects with late stage SCLC treated with first-line chemotherapy or chemoradiation in a prospective observational study. Tumor tissue samples were analyzed with the AVENIO Tumor Tissue Surveillance Kit (For Research Use Only, not for use in diagnostic procedures), a 198-kb next-generation sequencing panel covering 197 cancer genes. Matched peripheral blood mononuclear cells (PBMC), pre-treatment plasma, and multiple plasma from post-treatment timepoints were analyzed with the same panel using the AVENIO ctDNA Surveillance Kit (For Research Use Only, not for use in diagnostic procedures). A median input amount of 29 ng cfDNA, 129 ng tumor tissue DNA, and 50 ng PBMC DNA were sequenced to median deduplicated depths of 4491, 1315, and 6512, respectively. Somatic single nucleotide variants (SNVs) in tissue and plasma were identified by removing PBMC-matched germline or clonal hematopoietic mutations.
Results
We detected a median of 4 SNVs in tissue samples and a median of 100% (range 66 - 100%) of tissue SNVs in matched pre-treatment plasma. 96% (23/24) of subjects had at least one shared SNV between tissue and plasma, most commonly a TP53 mutation. A median of 7 SNVs were detected in pre-treatment plasma, whereas across all available post-treatment plasma (range 2 - 20 time points per subject), a median of 4 SNVs were detected. 53% of these mutations were not present in pre-treatment plasma or tissue.
Conclusions
Somatic mutations found in pre-treatment plasma were concordant with matched tissue, consistent with the highly metastatic nature of SCLC. ctDNA sequencing can provide additional molecular insights; in particular, detecting emergent mutations in ctDNA during treatment could advance our knowledge of SCLC.
Clinical trial identification
Editorial acknowledgement
Legal entity responsible for the study
Roche Sequencing Solutions, Inc.
Funding
Roche Sequencing Solutions, Inc.
Disclosure
S. Yaung: Full / Part-time employment: Roche. C. Woestmann: Full / Part-time employment: Roche. L. Xi: Full / Part-time employment: Roche. C. Ju: Full / Part-time employment: Roche. B. Hinzmann: Shareholder / Stockholder / Stock options, Full / Part-time employment: Roche. M. Thomas: Honoraria (institution), Advisory / Consultancy, Research grant / Funding (institution), Travel / Accommodation / Expenses: Roche. F. Lasitschka: Research grant / Funding (institution): Roche. M. Meister: Research grant / Funding (institution): Roche. M. Schneider: Research grant / Funding (institution): Roche. F.J.F. Herth: Honoraria (institution): Roche. T. Muley: Research grant / Funding (institution), Licensing / Royalties: Roche. B. Wehnl: Full / Part-time employment: Roche. J. Palma: Shareholder / Stockholder / Stock options, Full / Part-time employment: Roche. X.M. Ma: Shareholder / Stockholder / Stock options, Licensing / Royalties, Full / Part-time employment: Roche.
Resources from the same session
592 - Effects of novel targeted anticancer drugs on cytotoxicity, apoptosis, angiogenesis, EMT, drug resistance and autophagic mechanism
Presenter: Seyma Aydinlik
Session: Poster Display session 1
Resources:
Abstract
3235 - Delineating the mechanisms of alpha 1-3 fucosyltransferase FUT11 in ovarian cancer
Presenter: Qi Chen
Session: Poster Display session 1
Resources:
Abstract
3577 - The tyrosine kinase inhibitor Dasatinib blocks tumor growth, invasion and recurrence potential by interrupting the communication between cancer cells and their surrounding microenvironment in triple negative breast cancer
Presenter: Miriam Nuncia-Cantarero
Session: Poster Display session 1
Resources:
Abstract
4808 - NORE1A induces a feedback termination of TNF signaling by antagonizing TNFR1 through ITCH-mediated destruction complex
Presenter: Jieun Ahn
Session: Poster Display session 1
Resources:
Abstract
1294 - Hsp90 inhibitors enhance the antitumoral effect of osimertinib and overcome osimertinib resistance in non-small-cell cell lung cancer cell models
Presenter: Jordi Codony-Servat
Session: Poster Display session 1
Resources:
Abstract
1559 - Expression of IL-17RA promotes cancer stem-like properties of colorectal cancer cells by Stat3 activation
Presenter: Chih-Yung Yang
Session: Poster Display session 1
Resources:
Abstract
1615 - Adaption of Pancreatic Cancer Cells to AKT1 Inhibition Induces the Acquisition of Cancer Stem-Cell Like Phenotype Through Upregulation of Mitochondrial Functions
Presenter: Hugo Arasanz
Session: Poster Display session 1
Resources:
Abstract
4793 - Bub3 is phosphorylated by the Ataxia-Telangiectasia Mutated Kinase in mitosis and required for activation of the mitotic spindle checkpoint in Breast Cancer
Presenter: Mingming Xiao
Session: Poster Display session 1
Resources:
Abstract
1448 - The regulation of INK4 locus by long non-coding RNAs
Presenter: Yojiro Kotake
Session: Poster Display session 1
Resources:
Abstract
1858 - Vascular Endothelial Growth Factor in Colorectal Cancer Pathology, Survival and Treatment
Presenter: Liz Baker
Session: Poster Display session 1
Resources:
Abstract