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Updated: Feb 25, 2026

A Standardized Liquid Biopsy Preanalytical Protocol for Downstream Circulating-Free DNA Applications
Published on: September 16, 2022
Liquid biopsies in lung cancer-time to implement research technologies in routine care?
Linda Köhn1, Mikael Johansson1, Kjell Grankvist2
1Department of Radiation Sciences, Oncology, Clinical Chemistry, Umeå University, Umeå, Sweden.
Abstract:
Lung cancer is the leading cause of cancer mortality. A substantial progress in the understanding of lung cancer biology has resulted in several promising targeted therapies for advanced disease. Druggable targets today include point mutations such as EGFR, BRAF and re-arrangements in genes such as ALK and ROS1. Liquid biopsies collecting e.g., circulating tumor DNA (ctDNA) reflects overall tumor information and is not biased by analyzing of only a small fraction of the tumor and is always accessible in contrast to the lung cancer tissue. Technological advances in detection of low frequency mutation variants in ctDNA have made it the dominating liquid biopsy platform in terms of utility and sensitivity. Circulating DNA or RNA may possible be used to define populations with higher risk of developing lung cancer, thus reducing screening cohorts and increasing the positive predictive value of screening. Blood based-tests may also aid to identify genetic alterations several weeks prior to radiologically verified recurrence and may be of great value in the follow-up of lung cancer patients. Besides being an alternative to invasive biopsies in selected cases, liquid biopsies offer a unique possibility to monitor treatment response following medical treatment as well as treatment response and resistance development after targeted therapy, giving a possibility to modify the treatment after the genetic profile of the tumor. Ideally, genetic alterations found in ctDNA could be tracked in real-time discriminating between fast-growing life-threatening tumors from more indolent slow growing tumors or premalignant growth that are of no concern for the wellbeing of the patient. This review focuses on future perspectives of liquid biopsies in lung cancer care for different clinical settings and present current technological platforms for further discussion of possible strategies for implementation of liquid biopsies in lung cancer.
Insights
Liquid biopsies, analyzing circulating tumor DNA (ctDNA), offer a non-invasive method for lung cancer detection, monitoring, and personalized treatment. These advanced blood tests improve early diagnosis and treatment response assessment for better patient outcomes.
Area of Science:
- Oncology
- Molecular Diagnostics
- Genetics
Background:
- Lung cancer remains a leading cause of cancer mortality globally.
- Significant advancements in understanding lung cancer biology have led to targeted therapies for advanced stages, focusing on specific genetic mutations (e.g., EGFR, BRAF) and rearrangements (e.g., ALK, ROS1).
- Liquid biopsies, particularly those analyzing circulating tumor DNA (ctDNA), provide a comprehensive and accessible tumor profile, overcoming limitations of tissue biopsies.
Purpose of the Study:
- To review the future perspectives of liquid biopsies in various clinical settings for lung cancer care.
- To discuss current technological platforms for liquid biopsy analysis.
- To explore strategies for implementing liquid biopsies in routine lung cancer management.
Main Methods:
- Review of current scientific literature on liquid biopsy technologies and their applications in lung cancer.
- Analysis of the utility and sensitivity of ctDNA detection for various clinical scenarios.
- Discussion of technological platforms for analyzing circulating DNA and RNA.
Main Results:
- Liquid biopsies offer a non-invasive alternative to traditional tissue biopsies.
- ctDNA analysis can identify high-risk populations for lung cancer screening and detect genetic alterations indicative of recurrence earlier than radiological methods.
- Liquid biopsies enable real-time monitoring of treatment response and resistance development, facilitating personalized treatment modifications.
Conclusions:
- Liquid biopsies represent a significant advancement in lung cancer diagnostics and management.
- Their ability to provide real-time tumor genetic information supports personalized medicine and improved patient outcomes.
- Further development and implementation of liquid biopsy strategies are crucial for optimizing lung cancer care.

