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Updated: Oct 31, 2025

Detection of Cell-Free DNA in Blood Plasma Samples of Cancer Patients
Published on: September 9, 2020
Genetic Characterization of Cancer of Unknown Primary Using Liquid Biopsy Approaches
Noemi Laprovitera1,2, Irene Salamon1,3, Francesco Gelsomino1,4
1Department of Experimental, Diagnostic and Specialty Medicine (DIMES), University of Bologna, Bologna, Italy.
Abstract:
Cancers of unknown primary (CUPs) comprise a heterogeneous group of rare metastatic tumors whose primary site cannot be identified after extensive clinical-pathological investigations. CUP patients are generally treated with empirical chemotherapy and have dismal prognosis. As recently reported, CUP genome presents potentially druggable alterations for which targeted therapies could be proposed. The paucity of tumor tissue, as well as the difficult DNA testing and the lack of dedicated panels for target gene sequencing are further relevant limitations. Here, we propose that circulating tumor cells (CTCs) and circulating tumor DNA (ctDNA) could be used to identify actionable mutations in CUP patients. Blood was longitudinally collected from two CUP patients. CTCs were isolated with CELLSEARCH® and DEPArrayTM NxT and Parsortix systems, immunophenotypically characterized and used for single-cell genomic characterization with Ampli1TM kits. Circulating cell-free DNA (ccfDNA), purified from plasma at different time points, was tested for tumor mutations with a CUP-dedicated, 92-gene custom panel using SureSelect Target Enrichment technology. In parallel, FFPE tumor tissue was analyzed with three different assays: FoundationOne CDx assay, DEPArray LibPrep and OncoSeek Panel, and the SureSelect custom panel. These approaches identified the same mutations, when the gene was covered by the panel, with the exception of an insertion in APC gene. which was detected by OncoSeek and SureSelect panels but not FoundationOne. FGFR2 and CCNE1 gene amplifications were detected in single CTCs, tumor tissue, and ccfDNAs in one patient. A somatic variant in ARID1A gene (p.R1276∗) was detected in the tumor tissue and ccfDNAs. The alterations were validated by Droplet Digital PCR in all ccfDNA samples collected during tumor evolution. CTCs from a second patient presented a pattern of recurrent amplifications in ASPM and SEPT9 genes and loss of FANCC. The 92-gene custom panel identified 16 non-synonymous somatic alterations in ccfDNA, including a deletion (I1485Rfs∗19) and a somatic mutation (p. A1487V) in ARID1A gene and a point mutation in FGFR2 gene (p.G384R). Our results support the feasibility of non-invasive liquid biopsy testing in CUP cases, either using ctDNA or CTCs, to identify CUP genetic alterations with broad NGS panels covering the most frequently mutated genes.
Insights
Liquid biopsies using circulating tumor DNA (ctDNA) and circulating tumor cells (CTCs) can identify actionable mutations in cancers of unknown primary (CUPs). This non-invasive approach aids in discovering genetic alterations for potential targeted therapies in CUP patients.
Area of Science:
- Oncology
- Genomics
- Molecular Diagnostics
Background:
- Cancers of unknown primary (CUPs) are rare metastatic tumors with unidentified primary sites, posing treatment challenges.
- Standard empirical chemotherapy for CUPs offers limited efficacy and a poor prognosis.
- Genomic profiling reveals potentially targetable alterations in CUPs, but tissue acquisition is often limited.
Purpose of the Study:
- To evaluate the feasibility of using liquid biopsies, specifically circulating tumor DNA (ctDNA) and circulating tumor cells (CTCs), for identifying actionable genetic mutations in CUP patients.
- To compare the efficacy of different genomic analysis platforms for detecting mutations in CUPs.
Main Methods:
- Longitudinal blood collection from two CUP patients.
- Isolation and immunophenotypic characterization of CTCs using CELLSEARCH, DEPArray NxT, and Parsortix systems.
- Single-cell genomic characterization of CTCs using Ampli1 kits.
- Analysis of circulating cell-free DNA (ccfDNA) using a 92-gene custom panel (SureSelect Target Enrichment).
- Comparison with FFPE tumor tissue analysis using FoundationOne CDx, DEPArray LibPrep, OncoSeek Panel, and SureSelect custom panel.
Main Results:
- Identical mutations were detected across platforms when genes were covered, with a noted exception for an APC gene insertion.
- FGFR2 and CCNE1 gene amplifications were found in CTCs, tumor tissue, and ccfDNA in one patient.
- ARID1A gene variants were detected in tumor tissue and ccfDNA, validated by Droplet Digital PCR.
- Second patient's CTCs showed ASPM and SEPT9 amplifications and FANCC loss.
- The 92-gene panel identified 16 somatic alterations in ccfDNA, including ARID1A and FGFR2 mutations.
Conclusions:
- Non-invasive liquid biopsy testing using ctDNA or CTCs is feasible for identifying genetic alterations in CUP cases.
- Broad next-generation sequencing (NGS) panels covering frequently mutated genes are effective for CUP molecular profiling.
- Liquid biopsies offer a promising avenue for guiding targeted therapy selection in CUP patients.

