Abstract 125P
Background
Presence of homologous recombination repair deficiency (HRD) in cancer cells is a biomarker for predicting responses to anticancer treatments acting through synthetic lethality, such as PARP inhibitors. HRD detection relies on functional or genomic approaches measuring genomic scars or genomic instability resulting from lack of functioning repair mechanisms. We evaluated 2 whole-genome microarray data analysis approaches for detecting HRD in cancer samples, compared to next-generation sequencing (NGS).
Methods
In total 212 FFPE samples were tested with OncoScan™ CNV Plus Assay for Research. Data was analyzed using 2 different approaches based on previously published methods: MTD1 (based on whole genome doubling events) and MTD2 (based on copy number analysis) with Chromosome Analysis Suite Version 4.3.0.71, Rstudio Version 2023.09.1+494, and R version 4.3.2. For all samples the HRD score obtained using a commercially available NGS-based assay was available for comparison. The sample cohort was split into the training (N=124 samples) and validation cohort (N=88 samples). Positive (PPA), negative (NPA) and overall percent agreements (OPA) between the microarray and commercial NGS-based approach were calculated.
Results
Analysis of 124 samples using MTD1 detected 30 samples with HRD. When compared to the commercially available HRD test the OPA was 88.7% (95% CI, 81.9-93.1%), with PPA of 80.8% (95% CI, 62.1-91.5%) and NPA of 90.82% (95% CI, 83.5-95.1%). MTD2 analysis approach of the same sample set detected HRD in 24 samples, reaching an OPA of 91.9% (95% CI, 85.8-95.6%), with PPA of 76.9% (95% CI, 57.9-89.0%) and NPA of 95.92% (95% CI, 90.0-98.4%). The analysis of the second sample cohort of 88 samples with MTD2 detected 41 samples with HRD and yielded similar agreement to the commercially available HRD test with OPA of 84.4% (95% CI, 75.1-90.3%), PPA of 80.0% (95% CI, 66.18-89.1%) and NPA of 88.37% (95% CI, 75.5-94.9%).
Conclusions
The Applied BiosystemsTM OncoScanTM CNV Plus Assay for Research offers a reliable and cost-effective alternative to NGS-based approaches for detection of HRD and can contribute to expanding access to HRD testing for cancer research.
Clinical trial identification
Editorial acknowledgement
Legal entity responsible for the study
The authors.
Funding
Thermo Fisher Scientific.
Disclosure
C. Kidwell, A. Crawford: Financial Interests, Personal, Full or part-time Employment: Quantigen. M. Napier, A. Roter, D. Woo, J.S. Milosevic Feenstra: Financial Interests, Personal, Full or part-time Employment: Thermo Fisher Scientific.
Resources from the same session
163P - Tumorspheres cultured from circulating cancer stem cells overexpress the innate checkpoint CD47 in breast cancer patients
Presenter: Monika Pizon
Session: Poster session 08
Resources:
Abstract
164P - A spatially informed transcriptomic model to forecast early resistance to front-line osimertinib in advanced EGFR-mutant NSCLC
Presenter: Jon Zugazagoitia
Session: Poster session 08
165P - Consistency analysis of c-Met protein expression over time in patients with non-squamous non-small cell lung cancer
Presenter: Alexis Cortot
Session: Poster session 08
166P - Integrative multi-omics refine molecular diagnostics in non-small cell lung cancer
Presenter: Li Ren Kong
Session: Poster session 08
167P - Tumor-immune spatial interactions on NSCLC H&E slide images predicts immunotherapy response: Preliminary external validation
Presenter: Liam Il-Young Chung
Session: Poster session 08
168P - Biosimulation coupled with personalized tumor microenvironment (TME) modeling predicts response to immunotherapy treatment in NSCLC patients
Presenter: Himanshu Grover
Session: Poster session 08
169P - Analysis of tumor immune microenvironment with mIHC in Chinese non-small cell lung cancer
Presenter: Hao Wu
Session: Poster session 08
170P - Clinical presentations and prognosis of HER2-low breast cancer in Taiwan
Presenter: Grace Chen
Session: Poster session 08
171P - A computational pathology collagen signature predictive of tamoxifen benefit in ductal carcinoma in situ: Results from a cohort within the UK/ANZ DCIS randomized trial
Presenter: Arpit Aggarwal
Session: Poster session 08
172P - HER2 expression across solid tumors and real-world implications for use of fam-trastuzumab deruxtecan-nxki (T-Dxd)
Presenter: Ahmed Ismail
Session: Poster session 08