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Updated: Jul 27, 2025

Testing Targeted Therapies in Cancer using Structural DNA Alteration Analysis and Patient-Derived Xenografts
Published on: July 25, 2020
Analysis of circulating tumor DNA during checkpoint inhibition in metastatic melanoma using a tumor-agnostic panel
Judit Kisistók1,2,3, Ditte Sigaard Christensen1,2,4, Mads Heilskov Rasmussen1,2
1Department of Molecular Medicine, Aarhus University Hospital.
Abstract:
Immunotherapy has revolutionized treatment of patients diagnosed with metastatic melanoma, where nearly half of patients receive clinical benefit. However, immunotherapy is also associated with immune-related adverse events, which may be severe and persistent. It is therefore important to identify patients that do not benefit from therapy early. Currently, regularly scheduled CT scans are used to investigate size changes in target lesions to evaluate progression and therapy response. This study aims to explore if panel-based analysis of circulating tumor DNA (ctDNA) taken at 3-week intervals may provide a window into the growing cancer, can be used to identify nonresponding patients early, and determine genomic alterations associated with acquired resistance to checkpoint immunotherapy without analysis of tumor tissue biopsies. We designed a gene panel for ctDNA analysis and sequenced 4-6 serial plasma samples from 24 patients with unresectable stage III or IV melanoma and treated with first-line checkpoint inhibitors enrolled at the Department of Oncology at Aarhus University Hospital, Denmark. TERT was the most mutated gene found in ctDNA and associated with a poor prognosis. We detected more ctDNA in patients with high metastatic load, which indicates that more aggressive tumors release more ctDNA into the bloodstream. Although we did not find evidence of specific mutations associated with acquired resistance, we did demonstrate in this limited cohort of 24 patients that untargeted, panel-based ctDNA analysis has the potential to be used as a minimally invasive tool in clinical practice to identify patients where the benefits of immunotherapy outweigh the drawbacks.
Insights
Circulating tumor DNA (ctDNA) analysis may help identify early non-responders to melanoma immunotherapy. This minimally invasive tool shows potential for guiding treatment decisions, improving patient outcomes in metastatic melanoma.
Area of Science:
- Oncology
- Genetics
- Immunology
Background:
- Immunotherapy offers significant benefits for metastatic melanoma patients, but immune-related adverse events necessitate early identification of non-responders.
- Current response evaluation relies on CT scans, which may not provide timely information on treatment efficacy.
Purpose of the Study:
- To investigate the utility of serial circulating tumor DNA (ctDNA) analysis for early identification of non-responding patients to checkpoint immunotherapy in metastatic melanoma.
- To explore ctDNA for detecting genomic alterations associated with acquired resistance without tumor biopsies.
Main Methods:
- Panel-based ctDNA analysis of 4-6 serial plasma samples from 24 patients with unresectable stage III/IV melanoma treated with first-line checkpoint inhibitors.
- Sequencing of ctDNA to identify mutations and correlate with clinical outcomes and metastatic load.
Main Results:
- TERT mutations were the most frequent in ctDNA and correlated with poor prognosis.
- Higher ctDNA levels were detected in patients with a greater metastatic burden, suggesting more aggressive tumors.
- No specific mutations linked to acquired resistance were identified in this cohort.
Conclusions:
- Panel-based ctDNA analysis is a promising minimally invasive tool for clinical practice.
- ctDNA monitoring can potentially identify patients who will benefit from immunotherapy, aiding in treatment decisions.

