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Updated: Aug 5, 2026

Detection and Monitoring of Tumor Associated Circulating DNA in Patient Biofluids
Published on: June 8, 2019
Ultrasensitive circulating tumor DNA detection improves prognostication in triple-negative breast cancer
L Cabel1, C Lamy2, C W Abbott3
1Department of Medical Oncology, Institute Curie, Paris and Saint-Cloud, France; Circulating Tumor Biomarkers Laboratory, CIC Inserm 1428, Paris, France.
Background:
Current treatment guidelines for patients diagnosed with stage II to III triple-negative breast cancer (TNBC) rely on the use of neoadjuvant therapy (NAT). A critical unmet need is a sensitive test that can inform the presence of distant micrometastases to help personalize postneoadjuvant systemic therapy beyond pathological complete response (pCR).
Patients And Methods:
In this study, 286 plasma samples from 86 patients from the SCANDARE study were retrospectively analyzed for circulating tumor DNA (ctDNA) at three presurgical timepoints: baseline, during and post-NAT, and during postsurgical follow-up, when available, using an ultrasensitive, tumor-informed, whole-genome-based assay.
Results:
After a median follow-up of 5.1 years, 15 patients (17.4%) had developed distant metastases, and 19 patients (22.1%) died; 100% of pretreatment baseline plasma samples were positive for detected ctDNA, and the majority of ctDNA detections during and post-NAT, presurgery, were at ultrasensitive (<100 parts per million) levels. Ultrasensitive ctDNA detection post-NAT, presurgery was highly prognostic of distant recurrence-free interval, disease-free survival, and overall survival. Notably, ultrasensitive ctDNA detection status improved the prognostication of patients without pCR at surgery, with 94% of non-pCR patients with undetectable ctDNA post-NAT, presurgery remaining distant recurrence-free.
Conclusions:
These findings highlight the potential of ctDNA to refine risk assessment in patients with early-stage TNBC and support its investigation in interventional settings to guide systemic treatment decisions.
