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Tumor Heterogeneity and Lesion-Specific Response to Targeted Therapy in Colorectal Cancer
Author(s) -
Mariangela Russo,
Giulia Siravegna,
Lawrence S. Blaszkowsky,
Giorgio Corti,
Giovanni Crisafulli,
Leanne G. Ahronian,
Benedetta Mussolin,
Eunice L. Kwak,
Michela Buscarino,
Luca Lazzari,
Emanuele Valtorta,
Mauro Truini,
Nicholas A. Jessop,
Hayley Robinson,
Theodore S. Hong,
Mari Mino–Kenudson,
Federica Di Nicolantonio,
Ashraf Thabet,
Andrea SartoreBianchi,
Salvatore Siena,
A. John Iafrate,
Alberto Bardelli,
Ryan B. Corcoran
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-15-1283
Subject(s) - colorectal cancer , cancer , lesion , medicine , tumor heterogeneity , oncology , cancer research , biology , computational biology , pathology
How genomic heterogeneity associated with acquired resistance to targeted agents affects response to subsequent therapy is unknown. We studied EGFR blockade in colorectal cancer to assess whether tissue and liquid biopsies can be integrated with radiologic imaging to monitor the impact of individual oncogenic alterations on lesion-specific responses. Biopsy of a patient's progressing liver metastasis following prolonged response to cetuximab revealed a MEK1(K57T) mutation as a novel mechanism of acquired resistance. This lesion regressed upon treatment with panitumumab and the MEK inhibitor trametinib. In circulating tumor DNA (ctDNA), mutant MEK1 levels declined with treatment, but a previously unrecognized KRAS(Q61H) mutation was also identified that increased despite therapy. This same KRAS mutation was later found in a separate nonresponding metastasis. In summary, parallel analyses of tumor biopsies and serial ctDNA monitoring show that lesion-specific radiographic responses to subsequent targeted therapies can be driven by distinct resistance mechanisms arising within separate tumor lesions in the same patient.

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