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Development and Maintenance of a Preclinical Patient Derived Tumor Xenograft Model for the Investigation of Novel Anti-Cancer Therapies
Published on: September 30, 2016
HDAC Inhibition Overcomes Acute Resistance to MEK Inhibition in BRAF-Mutant Colorectal Cancer by Downregulation of
Robbie Carson1, Basak Celtikci1, Cathy Fenning1
1Centre for Cancer Research and Cell Biology, School of Medicine, Dentistry and Biomedical Science, Queen's University Belfast, 97 Lisburn Road, Belfast, BT9 7AE, UK.
Purpose:
Activating mutations in the BRAF oncogene are found in 8% to 15% of colorectal cancer patients and have been associated with poor survival. In contrast with BRAF-mutant (MT) melanoma, inhibition of the MAPK pathway is ineffective in the majority of BRAFMT colorectal cancer patients. Therefore, identification of novel therapies for BRAFMT colorectal cancer is urgently needed.
Experimental Design:
BRAFMT and wild-type (WT) colorectal cancer models were assessed in vitro and in vivo. Small-molecule inhibitors of MEK1/2, MET, and HDAC were used, overexpression and siRNA approaches were applied, and cell death was assessed by flow cytometry, Western blotting, cell viability, and caspase activity assays.
Results:
Increased c-MET-STAT3 signaling was identified as a novel adaptive resistance mechanism to MEK inhibitors (MEKi) in BRAFMT colorectal cancer models in vitro and in vivo. Moreover, MEKi treatment resulted in acute increases in transcription of the endogenous caspase-8 inhibitor c-FLIPL in BRAFMT cells, but not in BRAFWT cells, and inhibition of STAT3 activity abrogated MEKi-induced c-FLIPL expression. In addition, treatment with c-FLIP-specific siRNA or HDAC inhibitors abrogated MEKi-induced upregulation of c-FLIPL expression and resulted in significant increases in MEKi-induced cell death in BRAFMT colorectal cancer cells. Notably, combined HDAC inhibitor/MEKi treatment resulted in dramatically attenuated tumor growth in BRAFMT xenografts.
Conclusions:
Our findings indicate that c-MET/STAT3-dependent upregulation of c-FLIPL expression is an important escape mechanism following MEKi treatment in BRAFMT colorectal cancer. Thus, combinations of MEKi with inhibitors of c-MET or c-FLIP (e.g., HDAC inhibitors) could be potential novel treatment strategies for BRAFMT colorectal cancer.
Insights
Targeting BRAF-mutant colorectal cancer requires new therapies. MEK inhibitors fail due to c-MET/STAT3-driven c-FLIPL upregulation, but combining MEK inhibitors with HDAC inhibitors shows promise.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Activating BRAF mutations occur in 8-15% of colorectal cancers, correlating with poor survival.
- BRAF-mutant colorectal cancer (BRAFMT CRC) shows limited response to MAPK pathway inhibition, unlike melanoma.
- Novel therapeutic strategies for BRAFMT CRC are critically needed.
Purpose of the Study:
- To investigate adaptive resistance mechanisms to MEK inhibitors in BRAFMT CRC.
- To identify novel therapeutic targets and combinations for BRAFMT CRC.
Main Methods:
- Utilized BRAFMT and wild-type (WT) colorectal cancer models in vitro and in vivo.
- Assessed effects of MEK, MET, and HDAC inhibitors, alongside overexpression and siRNA approaches.
- Evaluated cell death using flow cytometry, Western blotting, cell viability, and caspase activity assays.
Main Results:
- Identified increased c-MET-STAT3 signaling as a resistance mechanism to MEK inhibitors (MEKi) in BRAFMT CRC.
- MEKi treatment acutely increased c-FLIPL expression in BRAFMT cells, a response dependent on STAT3.
- Inhibition of c-FLIP or STAT3, or combined MEKi/HDAC inhibitor treatment, enhanced MEKi-induced cell death and reduced tumor growth in xenografts.
Conclusions:
- c-MET/STAT3-dependent c-FLIPL upregulation is a key escape mechanism from MEKi in BRAFMT CRC.
- Combination therapies targeting MEK, c-MET, or c-FLIP (e.g., with HDAC inhibitors) represent promising strategies for BRAFMT CRC.
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