Title
Molecular profiling of the residual disease of triple-negative breast cancers after neoadjuvant chemotherapy identifies actionable therapeutic targets
Date Issued
01 February 2014
Access level
open access
Resource Type
journal article
Author(s)
Balko J.M.
Giltnane J.M.
Wang K.
Young C.D.
Cook R.S.
Owens P.
Sanders M.E.
Kuba M.G.
Sánchez V.
Kurupi R.
Moore P.D.
Horiuchi D.
Goga A.
Lehmann B.D.
Bauer J.A.
Pietenpol J.A.
Ross J.S.
Palmer G.A.
Yelensky R.
Cronin M.
Miller V.A.
Stephens P.J.
Arteaga C.L.
Abstract
Neoadjuvant chemotherapy (NAC) induces a pathologic complete response (pCR) in approximately 30% of patients with triple-negative breast cancers (TNBC). In patients lacking a pCR, NAC selects a subpopulation of chemotherapy-resistant tumor cells. To understand the molecular underpinnings driving treatment-resistant TNBCs, we performed comprehensive molecular analyses on the residual disease of 74 clinically defined TNBCs after NAC, including nextgeneration sequencing (NGS) on 20 matched pretreatment biopsies. Combined NGS and digital RNA expression analysis identified diverse molecular lesions and pathway activation in drug-resistant tumor cells. Ninety percent of the tumors contained a genetic alteration potentially treatable with a currently available targeted therapy. Thus, profiling residual TNBCs after NAC identifies targetable molecular lesions in the chemotherapy-resistant component of the tumor, which may mirror micrometastases destined to recur clinically. These data can guide biomarker-driven adjuvant studies targeting these micrometastases to improve the outcome of patients with TNBC who do not respond completely to NAC. © 2014 American Association for Cancer Research.
Start page
232
End page
245
Volume
4
Issue
2
Language
English
OCDE Knowledge area
Patología Oncología
Scopus EID
2-s2.0-84896689570
PubMed ID
Source
Cancer Discovery
ISSN of the container
21598290
Sponsor(s)
National Cancer Institute K99CA175700, P30CA068485, P50CA098131, R01CA105436, R01CA143126
Sources of information: Directorio de Producción Científica Scopus