Activities of multiple cancer-related pathways are associated with BRAF mutation and predict the resistance to BRAF/MEK inhibitors in melanoma cells
The present inventors have identified specific oncogenic pathways preferentially activated in BRAF-mutated-melanoma cells and a pathway pattern that predicts resistance of BRAF-mutated melanoma to BRAF/MEK inhibitors, providing novel clinical implications for melanoma therapy. In one embodiment, a method comprises (a) testing a sample oiBRAF-mutated melanoma cells isolated from a patient and measuring the expression levels of genes expressed in the following oncogenic pathways: TNFa, EGFR, IFNa, hypoxia, IFNy, STAT3 and Myc; (b) calculating a 7-pathway activation pattern based on the measured expression levels of step (a); and (c) identifying the patient's resistance level to BRAF/MEK inhibitor treatment based on comparison of the calculated 7-pathway activation pattern to a reference.
1. A method for treating BRAF-associated melanoma cancer in a patient sensitive to BRAF/MEK inhibitor treatment comprising the steps of:
(a) testing a sample of BRAF-mutated melanoma cells isolated from the patient and measuring expression levels of genes expressed in the following signaling pathways: TNFα, EGFR, IFNα, hypoxia, IFNγ, STAT3 and Myc;
(b) using a support vector machine algorithm to identify the patient as sensitive to BRAF/MEK inhibitor treatment based on the expression levels measured in step (a) and comparison to a reference; and
(c) treating the patient identified as sensitive to BRAF/MEK inhibitor treatment with a BRAF/MEK inhibitor.
2. The method of claim 1 , wherein the BRAF/MEK inhibitor comprises dabrafenib, sorafenib, vemurafenib, LGX818, GDC-0879, PLX-4720, trametinib, selumetinib, binimetinib, cobimetinib, refametinib CI1040, PD0325901 or combinations thereof.