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Updated: Feb 13, 2026

Exosomal miRNA Analysis in Non-small Cell Lung Cancer NSCLC Patients' Plasma Through qPCR: A Feasible Liquid Biopsy Tool
Published on: May 27, 2016
Exosome-Based Detection of EGFR T790M in Plasma from Non-Small Cell Lung Cancer Patients
Elena Castellanos-Rizaldos1, Dominik G Grimm2, Vasisht Tadigotla1
1Exosome Diagnostics, Inc., Waltham, Massachusetts.
Abstract:
Purpose: About 60% of non-small cell lung cancer (NSCLC) patients develop resistance to targeted epidermal growth factor receptor (EGFR) inhibitor therapy through the EGFR T790M mutation. Patients with this mutation respond well to third-generation tyrosine kinase inhibitors, but obtaining a tissue biopsy to confirm the mutation poses risks and is often not feasible. Liquid biopsies using circulating free tumor DNA (cfDNA) have emerged as a noninvasive option to detect the mutation; however, sensitivity is low as many patients have too few detectable copies in circulation. Here, we have developed and validated a novel test that overcomes the limited abundance of the mutation by simultaneously capturing and interrogating exosomal RNA/DNA and cfDNA (exoNA) in a single step followed by a sensitive allele-specific qPCR.Experimental Design: ExoNA was extracted from the plasma of NSCLC patients with biopsy-confirmed T790M-positive (N = 102) and T790M-negative (N = 108) samples. The T790M mutation status was determined using an analytically validated allele-specific qPCR assay in a Clinical Laboratory Improvement Amendment laboratory.Results: Detection of the T790M mutation on exoNA achieved 92% sensitivity and 89% specificity using tumor biopsy results as gold standard. We also obtained high sensitivity (88%) in patients with intrathoracic disease (M0/M1a), for whom detection by liquid biopsy has been particularly challenging.Conclusions: The combination of exoRNA/DNA and cfDNA for T790M detection has higher sensitivity and specificity compared with historical cohorts using cfDNA alone. This could further help avoid unnecessary tumor biopsies for T790M mutation testing. Clin Cancer Res; 24(12); 2944-50. ©2018 AACR.
Insights
A new liquid biopsy method using exosomal RNA/DNA and cfDNA (exoNA) effectively detects the EGFR T790M mutation in non-small cell lung cancer patients. This advanced test improves upon cfDNA-only methods, potentially reducing the need for invasive tissue biopsies.
Area of Science:
- Oncology
- Molecular Diagnostics
- Genetics
Background:
- Non-small cell lung cancer (NSCLC) often develops resistance to EGFR inhibitor therapy due to the T790M mutation.
- Tissue biopsies for T790M detection are invasive and not always feasible for patients.
- Current liquid biopsies using circulating free tumor DNA (cfDNA) have limited sensitivity for this mutation.
Purpose of the Study:
- To develop and validate a novel noninvasive test for detecting the EGFR T790M mutation in NSCLC patients.
- To improve the sensitivity and specificity of liquid biopsies for T790M mutation detection.
- To offer an alternative to tumor biopsies for mutation status determination.
Main Methods:
- Simultaneous capture and interrogation of exosomal RNA/DNA and cfDNA (exoNA) from patient plasma.
- Development and validation of a sensitive allele-specific qPCR assay for T790M detection.
- Testing exoNA from 102 T790M-positive and 108 T790M-negative NSCLC patients.
Main Results:
- The exoNA test achieved 92% sensitivity and 89% specificity for T790M detection compared to tissue biopsy.
- High sensitivity (88%) was observed even in patients with intrathoracic disease (M0/M1a).
- The combined exoRNA/DNA and cfDNA approach demonstrated superior performance over cfDNA-only methods.
Conclusions:
- The novel exoNA-based liquid biopsy offers a highly sensitive and specific method for T790M mutation detection in NSCLC.
- This approach can potentially obviate the need for invasive tumor biopsies in many patients.
- The findings support the clinical utility of exoNA analysis for guiding targeted therapy selection.
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