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Updated: Jun 30, 2025

Patient-Derived Tumor Explants As a "Live" Preclinical Platform for Predicting Drug Resistance in Patients
Published on: February 7, 2021
Blood-based biomarkers in patients with non-small cell lung cancer treated with immune checkpoint blockade
Yo-Ting Tsai1, Jeffrey Schlom2, Renee N Donahue1
1Center for Immuno-Oncology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.
Abstract:
The paradigm of non-small cell lung cancer (NSCLC) treatment has been profoundly influenced by the development of immune checkpoint inhibitors (ICI), but the range of clinical responses observed among patients poses significant challenges. To date, analyses of tumor biopsies are the only parameter used to guide prognosis to ICI therapy. Tumor biopsies, however, are often difficult to obtain and tissue-based biomarkers are limited by intratumoral heterogeneity and temporal variability. In response, there has been a growing emphasis on the development of "liquid biopsy"‒ derived biomarkers, which offer a minimally invasive means to dynamically monitor the immune status of NSCLC patients either before and/or during the course of treatment. Here we review studies in which multiple blood-based biomarkers encompassing circulating soluble analytes, immune cell subsets, circulating tumor DNA, blood-based tumor mutational burden, and circulating tumor cells have shown promising associations with the clinical response of NSCLC patients to ICI therapy. These investigations have unveiled compelling correlations between the peripheral immune status of patients both before and during ICI therapy and patient outcomes, which include response rates, progression-free survival, and overall survival. There is need for rigorous validation and standardization of these blood-based assays for broader clinical application. Integration of multiple blood-based biomarkers into comprehensive panels or algorithms also has the potential to enhance predictive accuracy. Further research aimed at longitudinal monitoring of circulating biomarkers is also crucial to comprehend immune dynamics and resistance mechanisms and should be used alongside tissue-based methods that interrogate the tumor microenvironment to guide treatment decisions and may inform on the development of novel therapeutic strategies. The data reviewed here reinforce the opportunity to refine patient stratification, optimize treatments, and improve outcomes not only in NSCLC but also in the wider spectrum of solid tumors undergoing immunotherapy.
Insights
Liquid biopsies offer a minimally invasive way to track immune status in non-small cell lung cancer (NSCLC) patients undergoing immune checkpoint inhibitor (ICI) therapy. Blood-based biomarkers show promise for predicting treatment response and improving patient outcomes.
Area of Science:
- Oncology
- Immunotherapy
- Biomarker Discovery
Background:
- Immune checkpoint inhibitors (ICI) have transformed non-small cell lung cancer (NSCLC) treatment, yet predicting patient response remains challenging.
- Current prognostic methods rely on tumor biopsies, which are invasive and subject to heterogeneity.
- Liquid biopsies offer a less invasive alternative for monitoring patient immune status during therapy.
Purpose of the Study:
- To review studies on blood-based biomarkers for predicting NSCLC response to ICI therapy.
- To highlight the potential of liquid biopsies in dynamic patient monitoring.
- To discuss the need for validation and standardization of these assays.
Main Methods:
- Review of studies investigating various blood-based biomarkers.
- Analysis of circulating soluble analytes, immune cell subsets, circulating tumor DNA, blood-based tumor mutational burden, and circulating tumor cells.
- Correlation of peripheral immune status with treatment outcomes.
Main Results:
- Multiple blood-based biomarkers show promising associations with clinical response to ICI therapy in NSCLC.
- Peripheral immune status before and during therapy correlates with response rates, progression-free survival, and overall survival.
- Integration of multiple biomarkers may enhance predictive accuracy.
Conclusions:
- Blood-based biomarkers are valuable tools for monitoring NSCLC patients during ICI therapy.
- Further validation and standardization are crucial for clinical application.
- Longitudinal monitoring and integration with tissue-based methods can optimize treatment strategies and improve outcomes.
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