Aug 2026· Journal of the American Medical Association (JAMA)· Vol 336, pp. 960 - 968· 0 citations· 55 references
Medicine
TL;DR
CTDNA, consisting of small DNA fragments from cancer cells that can be analyzed in human blood, can help clinicians monitor cancer progression, detect minimal residual cancer, and identify genetic variants that may help guide treatment decisions.
Abstract
Importance
Circulating tumor DNA (ctDNA) evaluation, in which fragments of tumor DNA circulating in a patient’s bloodstream are extracted and analyzed, can be used to monitor cancer progression, detect residual cancer after treatment, and identify genetic changes within cancer cells that could affect treatment response. OBSERVATIONS ctDNA sequencing identifies cancer cell gene variants that inform the selection of molecularly directed therapies in several types of cancer, including non-small cell lung cancer, colorectal cancer, and breast cancer. Increases or decreases in ctDNA levels can indicate treatment response (ctDNA decrease) or cancer cell resistance and recurrence (ctDNA increase). Detecting ctDNA after curative intent therapy correlates strongly with cancer recurrence and poorer survival. In a meta-analysis of 1725 patients undergoing treatment for urothelial carcinoma, higher ctDNA levels were associated with poorer survival outcomes (hazard ratio for disease-free survival, 20.69 [95% CI, 9.63-44.43]; P < .001). This association was also observed in adjuvant settings (hazard ratio for disease-free survival, 4.51 [95% CI, 3.04-6.69]; P < .001) and in patients undergoing systemic therapy for metastatic disease (hazard ratio for overall survival, 2.0 [95% CI, 1.25-3.38]; P = .004; absolute rates not available). ctDNA detection may indicate minimal residual disease, defined as cancer cells detectable only by highly sensitive testing (eg, detection of 1 cancer cell in a population of 1 million normal cells) before disease progression is identified with imaging. Detecting an early increase in ctDNA and/or a novel sequence variation that may confer resistance to standard treatment can guide therapeutic decisions, such as changing to a new treatment, before tumor progression is detectable with conventional imaging. In a prospective cohort study of 130 patients with colorectal cancer, molecular relapse of disease was detected approximately 8.7 months earlier compared with standard-of-care imaging surveillance (5.5 months vs 14.2 months; P < .001). Similarly, patients with undetectable ctDNA levels may be able to discontinue therapy and be monitored, preventing potentially unnecessary exposure to chemotherapy that may have substantial adverse effects. However, the optimal timing of ctDNA testing, management of positive results in the absence of radiographic disease, and the cost-effectiveness of serial monitoring remain unclear.
Conclusions
AND RELEVANCE ctDNA, consisting of small DNA fragments from cancer cells that can be analyzed in human blood, can help clinicians monitor cancer progression, detect minimal residual cancer, and identify genetic variants that may help guide treatment decisions. Use of ctDNA may help select best treatment and timing of therapy for a patient with cancer, but optimal clinical applications remain unclear.
Circulating tumour DNA (ctDNA) in blood is now used in a less invasive way to guide personalised cancer therapy. Several blood tests can be conducted on ctDNA to determine whether there is a distant spread of cancer cells, discover microscopic cancer cells remaining after surgery, and observe how the immune system resp...
Yanyanting Chen· Theoretical and Natural Scie...· 0 citations
: Background: The early detection of molecular residual disease (MRD) is critical for predicting recurrence and guiding management in colorectal cancer (CRC). We aimed to evaluate the performance of tumor-informed circulating tumor DNA (ctDNA) analysis in monitoring MRD after curative-intent surgery. Methods: In this c...
William C. Cho, Yingyu Wang, Qian-Qian Yao et al.· Oncology Research· 0 citations
Background: Lung cancer is a heterogeneous disease with unpredictable trajectories. Risk stratification in lung cancer remains imprecise within tumor-node-metastasis (TNM) stages. Objectives: This work aims to evaluate whether methylated circulating tumor DNA (ctDNA) can improve prognostication at the time of diagnosis...
Peter Hjorth-Hansen, L. Nederby, C. Jacobsen et al.· Therapeutic Advances in Medi...· 0 citations
INTRODUCTION
Circulating tumor DNA is a promising noninvasive tool for tumor genotyping and recurrence monitoring in Colorectal Cancer (CRC), but its role in nonmetastatic disease remains unclear. This cross-sectional study evaluated preoperative plasma circulating cell-free DNA (cfDNA) in patients undergoing complete...
Mária Škereňová, E. Halašová, M. Šarlinová et al.· Current molecular medicine· 0 citations
Circulating tumor-derived endothelial cells (CTEC) have emerged as promising biomarkers reflecting tumor angiogenesis, disease progression and therapeutic response, although their clinical relevance in lung cancer remains underexplored. A total of 74 patients with lung cancer were enrolled in the present study, and bot...
Xiang Li, Jun Yang, Bin Chen et al.· Oncology Letters· 0 citations
Breast cancer remains the most frequently diagnosed cancer and a leading cause of cancer-related mortality among women worldwide, underscoring the need for accurate, minimally invasive biomarkers to support precision oncology. Conventional tissue biopsy remains the standard for molecular characterization but is limited...
E. I. Obeagu, C. Okafor· Breast Cancer: Basic and Cli...· 0 citations
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