ArticleJCO precision oncology2021
Cell-Free DNA Detection of Tumor Mutations in Heterogeneous, Localized Prostate Cancer Via Targeted, Multiregion Sequencing.
Article in JCO precision oncology, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed, 11 citations in OpenAlex.
- Two Decades of Disease Evolution and Biomarker-Guided Clinical Decision Making in Metastatic Prostate Cancer.International journal of molecular sciences · 2025Article
- Refined Procedure to Purify and Sequence Circulating Cell-Free DNA in Prostate Cancer.International journal of molecular sciences · 2025Article
- Re: Bernard Pope, Gahee Park, Edmund Lau, et al. Ultrasensitive Detection of Circulating Tumour DNA enriches for Patients with a Greater Risk of Recurrence of Clinically Prostate Cancer. Eur Urol 2024;85:407-10.European urology open science · 2024Article
- Spatiotemporal genomic profiling of intestinal metaplasia reveals clonal dynamics of gastric cancer progression.Cancer cell · 2023Article
- Article
- Cell-free DNA in the management of prostate cancer: Current status and future prospective.Asian journal of urology · 2023Review
- Early Plasma Circulating Tumor DNA as a Potential Biomarker of Disease Recurrence in Non-metastatic Prostate Cancer.Cancer research and treatment · 2023Observational
- The Value of Phenotypic Precision Medicine in Prostate Cancer.The oncologist · 2023Review
- Liquid Biopsy in Diagnosis and Prognosis of Non-Metastatic Prostate Cancer.Biomedicines · 2022Review
- Integration of Liquid Biopsies in Clinical Management of Metastatic Prostate Cancer.Current oncology reports · 2022Review
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Authors and funding
19 authors at 2 institutions in 1 country.
Funding
Abstract
Cell-free DNA (cfDNA) may allow for minimally invasive identification of biologically relevant genomic alterations and genetically distinct tumor subclones. Although existing biomarkers may detect localized prostate cancer, additional strategies interrogating genomic heterogeneity are necessary for identifying and monitoring aggressive disease. In this study, we aimed to evaluate whether circulating tumor DNA can detect genomic alterations present in multiple regions of localized prostate tumor tissue.
methodsLow-pass whole-genome and targeted sequencing with a machine-learning guided 2.5-Mb targeted panel were used to identify single nucleotide variants, small insertions and deletions (indels), and copy-number alterations in cfDNA. The majority of this study focuses on the subset of 21 patients with localized disease, although 45 total individuals were evaluated, including 15 healthy controls and nine men with metastatic castration-resistant prostate cancer. Plasma cfDNA was barcoded with duplex unique molecular identifiers. For localized cases, matched tumor tissue was collected from multiple regions (one to nine samples per patient) for comparison.
resultsSomatic tumor variants present in heterogeneous tumor foci from patients with localized disease were detected in cfDNA, and cfDNA mutational burden was found to track with disease severity. Somatic tissue alterations were identified in cfDNA, including nonsynonymous variants in
conclusionOur findings demonstrate the potential of targeted cfDNA sequencing to detect somatic tissue alterations in heterogeneous, localized prostate cancer, especially in a setting where matched tumor tissue may be unavailable (ie, active surveillance or treatment monitoring).
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