Literature DB >> 28625643

Sequential liquid biopsies reveal dynamic alterations of EGFR driver mutations and indicate EGFR amplification as a new mechanism of resistance to osimertinib in NSCLC.

Franciele H Knebel1, Fabiana Bettoni1, Andrea K Shimada1, Manoel Cruz1, João Victor Alessi2, Marcelo V Negrão2, Luiz Fernando L Reis1, Artur Katz1, Anamaria A Camargo3.   

Abstract

Osimertinib is an EGFR-T790M-specific TKI, which has demonstrated impressive response rates in NSCLC, after failure to first-line anti-EGFR TKIs. However, acquired resistance to osimertinib is also observed and the molecular mechanisms of resistance are not yet fully understood. Monitoring and managing NSCLC patients who progressed on osimertinib is, therefore, emerging as an important clinical challenge. Sequential liquid biopsies were used to monitor a patient with EGFR-exon19del positive NSCLC, who received erlotinib and progressed through the acquisition of the EGFR-T790M mutation. Erlotinib was discontinued and osimertinib was initiated. Blood samples were collected at erlotinib progression and during osimertinib treatment for the detection of the activating (EGFR-exon19del) and resistance mutations (EGFR-T790M, EGFR-C797S, BRAF-V600E, METamp and ERBB2amp) in the plasma DNA using digital droplet PCR. Plasma levels of the activating EGFR-exon19del accurately paralleled the clinical and radiological progression of disease and allowed early detection of AR to osimertinib. Resistance to osimertinib coincided with the emergence of a small tumor cell subpopulation carrying the known EGFR-C797S resistance mutation and an additional subpopulation carrying amplified copies of EGFR-exon19del. Given the existence of multiple AR mechanisms, quantification of the original EGFR activation mutation, instead of the resistance mutations, can be efficiently used to monitor response to osimertinib, allowing early detection of AR. Absolute quantification of both activation and resistance mutations can provide important information on tumor clonal evolution upon progression to osimertinib. Selective amplification of the EGFR-exon19del allele may represent a novel resistance mechanism to osimertinib.
Copyright © 2017 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Acquired resistance; EGFR; Liquid biopsy; Lung cancer; Osimertinib

Mesh:

Substances:

Year:  2017        PMID: 28625643     DOI: 10.1016/j.lungcan.2017.04.004

Source DB:  PubMed          Journal:  Lung Cancer        ISSN: 0169-5002            Impact factor:   5.705


  28 in total

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Authors:  Kaiji Fan; Cathrin Ritter; Paul Nghiem; Astrid Blom; Monique E Verhaegen; Andrzej Dlugosz; Niels Ødum; Anders Woetmann; Richard W Tothill; Rodney J Hicks; Michael Sand; David Schrama; Dirk Schadendorf; Selma Ugurel; Jürgen C Becker
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Review 3.  Current and Emerging Applications of Droplet Digital PCR in Oncology: An Updated Review.

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Review 6.  Potentiating Therapeutic Effects of Epidermal Growth Factor Receptor Inhibition in Triple-Negative Breast Cancer.

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7.  Somatic Copy-Number Alterations in Plasma Circulating Tumor DNA from Advanced EGFR-Mutated Lung Adenocarcinoma Patients.

Authors:  Anna Buder; Ellen Heitzer; Julie Waldispühl-Geigl; Sabrina Weber; Tina Moser; Maximilian J Hochmair; Klaus Hackner; Peter Errhalt; Ulrike Setinek; Martin Filipits
Journal:  Biomolecules       Date:  2021-04-21

Review 8.  Liquid Biopsy and Therapeutic Targets: Present and Future Issues in Thoracic Oncology.

Authors:  Paul Hofman
Journal:  Cancers (Basel)       Date:  2017-11-10       Impact factor: 6.639

9.  Mutational Profiling of Non-Small-Cell Lung Cancer Resistant to Osimertinib Using Next-Generation Sequencing in Chinese Patients.

Authors:  Keke Nie; Haiping Jiang; Chunling Zhang; Chuanxin Geng; Xiajuan Xu; Ling Zhang; Hao Zhang; Zhongfa Zhang; Ketao Lan; Youxin Ji
Journal:  Biomed Res Int       Date:  2018-03-11       Impact factor: 3.411

10.  Potential treatment strategy for the rare osimertinib resistant mutation EGFR L718Q.

Authors:  Yang Song; Ziqi Jia; Yadong Wang; Yanyu Wang; Peng Liu; Shuyang Zhang; Zhongxing Bing; Lei Cao; Zhili Cao; Elisabetta Rossi; Rita Zamarchi; Marc G Denis; Carlos Camps; Amaya B Fernandez-Diaz; Naixin Liang; Shanqing Li
Journal:  J Thorac Dis       Date:  2020-05       Impact factor: 3.005

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