Abstract 13P
Background
The limit of detection (LoD) represents the minimum number of reads to detect a variant in a given depth, especially in multigene panel testing (MGPT). The reliability of MGPT depends on LoD in detecting somatic variants with precision. Comparison based LoD calculations require multiple inputs like population and non-tumorous data, which needs a high computational power. The standard MGPTs calculate in-run LoD rather than allele specific. Here, we aim to introduce a single-data-driven parallelized algorithm that overcomes these limitations.
Methods
The algorithm utilizes VCF and BAM files and derives the log-odds score from the binomial probabilities of true positive and false positive along with the variant allele fraction. Subsequently, the algorithm determines the minimum VAF threshold, indicating that the variant is confidently detectable above the specified error rate (default: 0.0001). A total of 652 liquid biopsy samples reported by a MGPT (20 genes), were used for benchmarking. We performed Fisher's exact test (p<0.05) both at the variant and gene-based level to analyze the association between true and false positive predictions.
Results
In our study, we optimized the algorithm's execution time by implementing it in a parallel processing framework. We were able to calculate LoDs in 44.32 kb/min speed within the configuration of 64 cores and 256 GB of memory. Based on reported detectable variants, the algorithm significantly demonstrated 89.92% positive predictive value (p=0.0001). When we assessed the algorithm at the gene-based level, all of 20 cancer-related genes were found statistically significant (p<0.003), which proves our testing accuracy.
Conclusions
The algorithm achieved highly significant associations by overcoming the limitations of comparison-based LoD calculations, both at the variant- and gene-based levels. These findings highlight the potential of our tool to aid precision oncogenomics from liquid biopsy samples. Overall, the study presents a novel LoD tool for all NGS applications, particularly in the scope of MGPT for somatic variants. The tool holds promise in advancing precision oncogenomics and may serve as a valuable asset in all personalized treatment strategies.
Editorial acknowledgement
Clinical trial identification
Legal entity responsible for the study
Acibadem Mehmet Ali Aydinlar University, Institute of Health Sciences, Department of Genome Studies.
Funding
Has not received any funding.
Disclosure
All authors have declared no conflicts of interest.
Resources from the same session
21P - Hsa_circ_0009061 inhibits the progression of bladder cancer through the miR-889-3p/CPEB3 axis
Presenter: Minkang Wu
Session: Cocktail & Poster Display session
Resources:
Abstract
22P - Exploring exportin-1 as a therapeutic vulnerability in lung squamous cell carcinoma
Presenter: Vidushi Durani
Session: Cocktail & Poster Display session
Resources:
Abstract
23P - Identification of HPSE as potential novel therapeutic target for lung adenocarcinoma patients
Presenter: Samuel Doré
Session: Cocktail & Poster Display session
Resources:
Abstract
24P - High-throughput plasma proteomics profiling in early breast cancer
Presenter: Isabella Lombardo
Session: Cocktail & Poster Display session
Resources:
Abstract
25P - Immunohistochemical analysis of ROR1 and BMI-1 expression in luminal breast cancer
Presenter: Sergey Vtorushin
Session: Cocktail & Poster Display session
Resources:
Abstract
26P - Associations between cancer stem cells (CSC) markers and androgen (AR) and estrogen (ER) receptors expression in prostate cancer (PCa)
Presenter: Marina Puchinskaya
Session: Cocktail & Poster Display session
Resources:
Abstract
27P - Proteomic profiling reveals organ-specific differences in metastases and identifies potential biomarkers for recurrence risk in localized colon cancer
Presenter: Blanca García-Micó
Session: Cocktail & Poster Display session
Resources:
Abstract
28P - Collagen-activated signalling pathway is significantly hypermethylated in high-grade serous ovarian cancer (HGSOC) patients treated with platinum-containing neoadjuvant chemotherapy (NACT)
Presenter: Jose Alejandro Perez Fidalgo
Session: Cocktail & Poster Display session
Resources:
Abstract
29P - Quantitative tissue analysis reveal adenylate kinase 2 protein signatures: Therapeutic target for meningioma
Presenter: Rashmi Rana
Session: Cocktail & Poster Display session
Resources:
Abstract
30P - Role of microRNA and CDKN2A/p16INK4a expression in the prognostication of oral squamous cell carcinoma
Presenter: Olha Burtyn
Session: Cocktail & Poster Display session
Resources:
Abstract