Targeted Molecular Profiling of Circulating Cell-Free DNA in Patients With Advanced Hepatocellular Carcinoma.
retrospective_cohort · Level III
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- Record sourced from PubMed, PMID 37769223.
- Also identified by DOI 10.1200/PO.23.00272 and PMC identifier 10581608.
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Abstract
Next-generation sequencing (NGS) of tumor-derived, circulating cell-free DNA (cfDNA) may aid in diagnosis, prognostication, and treatment of patients with hepatocellular carcinoma (HCC). The operating characteristics of cfDNA mutational profiling must be determined before routine clinical implementation. This was a single-center, retrospective study with the primary objective of defining genomic alterations in circulating cfDNA along with plasma-tissue genotype agreement between NGS of matched tumor samples in patients with advanced HCC. cfDNA was analyzed using a clinically validated 129-gene NGS assay; matched tissue-based NGS was analyzed with a US Food and Drug Administration-authorized NGS tumor assay. Fifty-three plasma samples from 51 patients with histologically confirmed HCC underwent NGS-based cfDNA analysis. Genomic alterations were detected in 92.2% of patients, with the most commonly mutated genes including <i>TERT promoter</i> (57%), <i>TP53</i> (47%), <i>CTNNB1</i> (37%), <i>ARID1A</i> (18%), and <i>TSC2</i> (14%). In total, 37 (73%) patients underwent paired tumor NGS, and concordance was high for mutations observed in patient-matched plasma samples: <i>TERT</i> (83%), <i>TP53</i> (94%), <i>CTNNB1</i> (92%), <i>ARID1A</i> (100%), and <i>TSC2</i> (71%). In 10 (27%) of 37 tumor-plasma samples, alterations were detected by cfDNA analysis that were not detected in the patient-matched tumors. Potentially actionable mutations were identified in 37% of all cases including oncogenic/likely oncogenic alterations in <i>TSC1/2</i> (18%), <i>BRCA1/2</i> (8%), and <i>PIK3CA</i> (8%). Higher average variant allele fraction was associated with elevated alpha-fetoprotein, increased tumor volume, and no previous systemic therapy, but did not correlate with overall survival in treatment-naïve patients. Tumor mutation profiling of cfDNA in HCC represents an alternative to tissue-based genomic profiling, given the high degree of tumor-plasma NGS concordance; however, genotyping of both blood and tumor may be required to detect all clinically actionable genomic alterations.
Medical subject headings
- Carcinoma, Hepatocellular
- Liver Neoplasms
- Circulating Tumor DNA
- Cell-Free Nucleic Acids