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Updated: May 27, 2026

Detection and Monitoring of Tumor Associated Circulating DNA in Patient Biofluids
Published on: June 8, 2019
Current status and future potential of somatic mutation testing from circulating free DNA in patients with solid
Abstract:
Genetic alterations can determine the natural history of cancer and its treatment response. With further advances in DNA sequencing technology, multiple novel genetic alterations will be discovered which could be exploited as prognostic, predictive and pharmacodynamic biomarkers in the development and use of cancer therapeutics. As such, the importance in clinical practice of efficient and robust somatic mutation testing in solid tumours cannot be overemphasized in the current era of personalized medicine. However, significant challenges remain regarding the testing of genetic biomarkers in clinical practice. Reliance on archived formalin fixed, paraffin embedded tumour, obtained from diagnostic biopsies, for testing somatic genetic alterations could restrict the scientific community in asking relevant questions about a patient's cancer biology. Problems inherent with using formalin fixed, archival tissue are well recognized and difficult to resolve. It could be argued that to achieve rapid and efficient incorporation of genetic biomarkers into clinical practice, somatic mutation testing in cancer patients should be simpler, less invasive using a readily available clinical sample, whilst maintaining robustness and reproducibility. In this regard, use of circulating free DNA (cfDNA) from plasma or serum as an alternative and/or additional source of DNA to test cancer specific genetic alterations is an attractive proposition. In light of encouraging results from recent studies, this mini review will discuss the current role and future potential of somatic mutation testing from circulating or cell free DNA derived from the blood of patients with solid tumours.
Insights
Testing for cancer genetic alterations using circulating free DNA (cfDNA) from blood offers a simpler, less invasive alternative to traditional tissue biopsies. This approach holds promise for personalized medicine and advancing cancer research.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Genetic alterations are crucial in determining cancer progression and treatment outcomes.
- Personalized medicine relies heavily on robust somatic mutation testing in solid tumors.
- Current methods using formalin-fixed, paraffin-embedded tissues present significant limitations.
Purpose of the Study:
- To review the current role and future potential of somatic mutation testing using circulating free DNA (cfDNA).
- To explore cfDNA as a less invasive alternative to traditional tumor biopsies for genetic biomarker analysis.
- To discuss the advantages of cfDNA testing in the context of personalized cancer therapeutics.
Main Methods:
- Review of recent studies on somatic mutation testing in solid tumors.
- Analysis of the utility of circulating free DNA (cfDNA) derived from plasma or serum.
- Discussion of the challenges and benefits of using cfDNA for cancer genetic alteration detection.
Main Results:
- Circulating free DNA (cfDNA) presents an attractive proposition for detecting cancer-specific genetic alterations.
- cfDNA testing offers a simpler, less invasive method compared to traditional tissue-based testing.
- Encouraging results suggest cfDNA is a viable source for robust and reproducible genetic biomarker analysis.
Conclusions:
- Somatic mutation testing from cfDNA is a promising advancement in cancer diagnostics.
- cfDNA analysis facilitates easier incorporation of genetic biomarkers into clinical practice.
- This approach supports the future of personalized medicine by enabling efficient cancer biology research.
