Related Experiment Video
Updated: Feb 21, 2026

Detection of Cell-Free DNA in Blood Plasma Samples of Cancer Patients
Published on: September 9, 2020
Non-blood circulating tumor DNA detection in cancer
Muyun Peng1, Chen Chen1, Alicia Hulbert2
1Department of Thoracic Surgery, The Second Xiangya Hospital, Central South University, Changsha, Hunan, P.R China.
Abstract:
Tumor DNA contains specific somatic alterations that are crucial for the diagnosis and treatment of cancer. Due to the spatial and temporal intra-tumor heterogeneity, multi-sampling is needed to adequately characterize the somatic alterations. Tissue biopsy, however, is limited by the restricted access to sample and the challenges to recapitulate the tumor clonal diversity. Non-blood circulating tumor DNA are tumor DNA fragments presents in non-blood body fluids, such as urine, saliva, sputum, stool, pleural fluid, and cerebrospinal fluid (CSF). Recent studies have demonstrated the presence of tumor DNA in these non-blood body fluids and their application to the diagnosis, screening, and monitoring of cancers. Non-blood circulating tumor DNA has an enormous potential for large-scale screening of local neoplasms because of its non-invasive nature, close proximity to the tumors, easiness and it is an economically viable option. It permits longitudinal assessments and allows sequential monitoring of response and progression. Enrichment of tumor DNA of local cancers in non-blood body fluids may help to archive a higher sensitivity than in plasma ctDNA. The direct contact of cancerous cells and body fluid may facilitate the detection of tumor DNA. Furthermore, normal DNA always dilutes the plasma ctDNA, which may be aggravated by inflammation and injury when very high amounts of normal DNA are released into the circulation. Altogether, our review indicate that non-blood circulating tumor DNA presents an option where the disease can be tracked in a simple and less-invasive manner, allowing for serial sampling informing of the tumor heterogeneity and response to treatment.
Insights
Non-blood circulating tumor DNA offers a less-invasive method for cancer screening and monitoring. This approach captures tumor DNA from body fluids, aiding in tracking cancer heterogeneity and treatment response.
Area of Science:
- Oncology
- Molecular Diagnostics
- Biochemistry
Background:
- Tumor DNA harbors critical somatic alterations for cancer diagnosis and treatment.
- Intra-tumor heterogeneity necessitates multi-sampling for comprehensive characterization.
- Tissue biopsies face limitations in accessibility and recapitulating tumor diversity.
Purpose of the Study:
- To review the potential of non-blood circulating tumor DNA (ctDNA) for cancer diagnosis, screening, and monitoring.
- To highlight the advantages of non-blood ctDNA over traditional methods.
- To discuss the implications for tracking tumor heterogeneity and treatment response.
Main Methods:
- Review of recent studies on non-blood ctDNA detection in various body fluids (urine, saliva, CSF, etc.).
- Analysis of the diagnostic and monitoring capabilities of non-blood ctDNA.
- Comparison of non-blood ctDNA with plasma ctDNA for cancer detection sensitivity.
Main Results:
- Non-blood ctDNA fragments are present in various body fluids, offering diagnostic potential.
- Non-blood ctDNA enables non-invasive, cost-effective, and longitudinal cancer monitoring.
- Direct proximity to tumors may enhance sensitivity compared to plasma ctDNA.
Conclusions:
- Non-blood ctDNA represents a promising, minimally invasive strategy for cancer management.
- This approach facilitates serial sampling for detailed tumor heterogeneity and treatment response assessment.
- Non-blood ctDNA analysis offers a simpler, less-invasive alternative for disease tracking.

