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Updated: Feb 7, 2026

Detection and Monitoring of Tumor Associated Circulating DNA in Patient Biofluids
Published on: June 8, 2019
Clinical potential of circulating tumour DNA in patients receiving anticancer immunotherapy
Luc Cabel1,2,3, Charlotte Proudhon3, Emanuela Romano1,4
1Department of Medical Oncology, Institut Curie, PSL Research University, Paris, France.
Abstract:
Considerable interest surrounds the use of immune-checkpoint inhibitors in patients with solid tumours following the demonstration of the impressive clinical efficacy of anti-programmed cell death protein 1 and anti-programmed cell death 1 ligand 1 antibodies in several tumour types. However, the emergence of unexpected tumour response patterns, such as pseudoprogression or hyperprogression, might complicate the management of patients receiving these agents. Analysis of circulating tumour DNA (ctDNA) has been shown to have prognostic value by enabling the detection of residual proliferating disease in the adjuvant setting and estimation of tumour burden in the metastatic setting, which are key stratification biomarkers for use of immune-checkpoint inhibition (ICI). Furthermore, examinations of ctDNA for genetic predictors of responsiveness to immunotherapy, such as mutations, tumour mutational load, and microsatellite instability provide a noninvasive surrogate for tumour biopsy sampling. Proof-of-concept reports have also demonstrated that quantitative changes in ctDNA levels early in the course of disease are a promising tool for the assessment of responsiveness to ICI that might complement standard imaging approaches. Other applications of this technology are also currently under investigation, such as early detection of resistance to immunotherapy and characterization of mechanisms of resistance. The aim of this Review is to summarize available data on the application of ctDNA in patients receiving immunotherapy and to discuss the most promising future directions.
Insights
Circulating tumor DNA (ctDNA) shows promise in predicting responses to immune-checkpoint inhibitors (ICI) for solid tumors. Analyzing ctDNA offers insights into treatment effectiveness and resistance, aiding patient management.
Area of Science:
- Oncology
- Immunotherapy
- Molecular Diagnostics
Background:
- Immune-checkpoint inhibitors (ICIs) show efficacy in solid tumors.
- Tumor response patterns like pseudoprogression complicate ICI treatment.
- Circulating tumor DNA (ctDNA) has prognostic value in cancer management.
Purpose of the Study:
- To review the application of ctDNA in patients receiving immunotherapy.
- To discuss ctDNA's role in predicting ICI response and resistance.
- To explore future directions for ctDNA in immunotherapy.
Main Methods:
- Analysis of ctDNA for prognostic biomarkers.
- ctDNA detection of genetic predictors for immunotherapy response.
- Quantitative ctDNA level changes for assessing ICI responsiveness.
Main Results:
- ctDNA analysis aids in detecting residual disease and estimating tumor burden.
- ctDNA serves as a noninvasive surrogate for tumor biopsy.
- Early changes in ctDNA levels may predict response to ICI.
Conclusions:
- ctDNA is a valuable tool for managing patients on ICI therapy.
- ctDNA can complement imaging for assessing treatment response.
- Further research into ctDNA applications for immunotherapy is warranted.
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