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Heterogeneity Underlies the Emergence of EGFR T790 Wild-Type Clones Following Treatment of T790M-Positive Cancers with a Third-Generation EGFR Inhibitor
Author(s) -
Zofia Piotrowska,
Matthew J. Niederst,
Chris Karlovich,
Heather A. Wakelee,
Joel W. Neal,
Mari Mino–Kenudson,
Linnea Fulton,
Aaron N. Hata,
Elizabeth L. Lockerman,
Anuj Kalsy,
Subba R. Digumarthy,
Alona Muzikansky,
Mitch Raponi,
Angel R. Garcia,
Hillary E. Mulvey,
Melissa Parks,
Richard H. DiCecca,
Dora DiasSantagata,
A. John Iafrate,
Alice T. Shaw,
Andrew R. Allen,
Jeffrey A. Engelman,
Lecia V. Sequist
Publication year - 2015
Publication title -
cancer discovery
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.795
H-Index - 163
eISSN - 2159-8290
pISSN - 2159-8274
DOI - 10.1158/2159-8290.cd-15-0399
Subject(s) - t790m , cancer research , cancer , biology , wild type , egfr inhibitors , somatic evolution in cancer , mutation , lung cancer , mutant , epidermal growth factor receptor , genetics , medicine , gene , gefitinib
Rociletinib is a third-generation EGFR inhibitor active in lung cancers with T790M, the gatekeeper mutation underlying most first-generation EGFR drug resistance. We biopsied patients at rociletinib progression to explore resistance mechanisms. Among 12 patients with T790M-positive cancers at rociletinib initiation, six had T790-wild-type rociletinib-resistant biopsies. Two T790-wild-type cancers underwent small cell lung cancer transformation; three T790M-positive cancers acquired EGFR amplification. We documented T790-wild-type and T790M-positive clones coexisting within a single pre-rociletinib biopsy. The pretreatment fraction of T790M-positive cells affected response to rociletinib. Longitudinal circulating tumor DNA (ctDNA) analysis revealed an increase in plasma EGFR-activating mutation, and T790M heralded rociletinib resistance in some patients, whereas in others the activating mutation increased but T790M remained suppressed. Together, these findings demonstrate the role of tumor heterogeneity when therapies targeting a singular resistance mechanism are used. To further improve outcomes, combination regimens that also target T790-wild-type clones are required.

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