Abstract 426P
Background
Comprehensive genomic profiling (CGP) is vital for personalized cancer treatment. In Japan, existing healthcare-insurance CGP methods analyze 124-324 genes. ACT Onco+®, an innovative CGP, expands this to 440 DNA genes and 34 RNA genes, providing improved heterozygous deletion detection and RNA-based fusion analysis. This study evaluates ACT Onco+® in advanced solid tumors.
Methods
A cohort of 110 patients, previously examined using conventional CGP, underwent ACT Onco+® analysis.
Results
For Single Nucleotide Variants (SNVs), the initial positive concordance rate of reported alterations was 87.9%, with a 100% predictive value. After examining BAM files, 91.3% of discordance was reconciled, leading to an adjusted concordance rate of 98.9%. Insertions and Deletions (Indels) had a 69.0% concordance rate in initial reported Indels, adjusted to 91.5% after resolving 72.7% discordance. Amplifications and Homozygous Loss had respective positive concordance rates of 76.2% and 66.7%. Heterozygous Deletion was detected in 329 mutations across 61 samples (57.2%) by ACT Onco+®, a result not found in conventional CGP. Fusion Detection with ACT Onco+® revealed three fusions, including one (KIAA1549-BRAF) undetected conventionally. Actionable mutations were reported as 6.80 per sample by ACT Onco+®, compared to 4.87 with conventional CGP.
Conclusions
ACT Onco+® demonstrated higher detection of actionable genetic alterations, emphasizing its enhanced capabilities. Future investigations with larger sample cohorts are necessary to further validate its clinical relevance. This study marks an essential step in advancing personalized cancer therapy, offering more comprehensive insights into genetic variations that may inform treatment strategies.
Clinical trial identification
Editorial acknowledgement
Legal entity responsible for the study
Tokyo Medical and Dental University.
Funding
ACT med, ACT genomics.
Disclosure
R. Kakuta, S. Ikeda: Financial Interests, Institutional, Research Funding: ACT med, ACT genomics. All other authors have declared no conflicts of interest.
Resources from the same session
561P - Mechanisms of osimertinib resistance using circulating tumor DNA analyses for EGFR-mutated non-small cell lung cancer, results from ELUCIDATOR: A prospective observational multicenter study
Presenter: Daijiro Harada
Session: Poster Display
Resources:
Abstract
562P - First-line (1L) osimertinib (osi) ± platinum-pemetrexed in patients (pts) with EGFRm advanced NSCLC: FLAURA2 China cohort
Presenter: Yan Yu
Session: Poster Display
Resources:
Abstract
563P - Real-world effectiveness and safety of first-line osimertinib for EGFR-mutated advanced NSCLC in China (FLOURISH study)
Presenter: Jianya Zhou
Session: Poster Display
Resources:
Abstract
564P - Co-occurring EGFR p.E709X mutation affects the treatment response to the third-generation EGFR-TKIs in EGFR p.G719X-mutant patients with advanced NSCLC
Presenter: Wen Feng Fang
Session: Poster Display
Resources:
Abstract
565P - Genome-guided targeted therapy combination improves survival in patients with advanced EGFR mutation positive NSCLC failing osimertinib
Presenter: Molly Li
Session: Poster Display
Resources:
Abstract
566P - Safety of tepotinib + osimertinib in EGFR-mutant NSCLC with MET amplification after first-line osimertinib
Presenter: Chong Kin Liam
Session: Poster Display
Resources:
Abstract
567P - Furmonertinib in combination with bevacizumab and intrathecal chemotherapy as later-line re-challenge treatment in EGFR –mutated NSCLC patients with leptomeningeal metastasis after third-generation EGFR-TKIs treatment failure
Presenter: Fang Cun
Session: Poster Display
Resources:
Abstract
568P - First-line (1L) osimertinib + platinum-pemetrexed in EGFR-mutated (EGFRm) advanced NSCLC: Updated FLAURA2 safety run-in (SRI) results
Presenter: David Planchard
Session: Poster Display
Resources:
Abstract
569P - Whole-transcriptome sequencing of transformed small-cell lung cancer from EGFR-mutated lung adenocarcinoma reveals LUAD–like and SCLC–like subsets
Presenter: Chan-Yuan Zhang
Session: Poster Display
Resources:
Abstract
570P - First-line osimertinib for patients with advanced NSCLC harboring EGFR mutations: A real-world study
Presenter: Wenxiang Ji
Session: Poster Display
Resources:
Abstract