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A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
Multifaceted Effects of Kinase Inhibitors on Pancreatic Cancer Cells Reveals Pivotal Entities with Therapeutic
Yoo Na Kim1, Ketki Patil1, Jeonghwa Ma1
1Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, 313 Ferst Drive, Atlanta, GA 30332, USA.
Abstract:
Pancreatic cancer is one of the most aggressive forms of cancer and is the seventh leading cause of cancer deaths worldwide. Pancreatic ductal adenocarcinoma (PDAC) accounts for over 90% of pancreatic cancers. Most pancreatic cancers are recalcitrant to radiation, chemotherapy, and immunotherapy, highlighting the urgent need for novel treatment options for this deadly disease. To this end, we screened a library of kinase inhibitors in the PDAC cell lines PANC-1 and BxPC-3 and identified two highly potent molecules: Aurora kinase inhibitor AT 9283 (AT) and EGFR kinase inhibitor WZ 3146 (WZ). Both AT and WZ exhibited a dose-dependent inhibition of viability in both cell lines. Thus, we conducted an in-depth multilevel (cellular, molecular, and proteomic) analysis with AT and WZ in PANC-1 cells, which harbor KRAS mutation and exhibit quasimesenchymal properties representing pancreatic cancer cells as having intrinsic chemoresistance and the potential for differential response to therapy. Elucidation of the molecular mechanism of action of AT and WZ revealed an impact on the programmed cell death pathway with an increase in apoptotic, multicaspase, and caspase 3/7 positive cells. Additionally, the key survival molecule Bcl-2 was impacted. Moreover, cell cycle arrest was observed with both kinase inhibitors. Additionally, an increase in superoxide radicals was observed in the AT-treated group. Importantly, proteomic profiling revealed differentially regulated key entities with multifaceted effects, which could have a deleterious impact on PDAC. These findings suggest potential targets for efficacious treatment, including a possible increase in the efficacy of immunotherapy using PD-L1 antibody due to the upregulation of lactoferrin and radixin. Furthermore, combination therapy outcomes with gemcitabine/platinum drugs may also be more effective due to an increase in the NADH dehydrogenase complex. Notably, protein-protein interaction analysis (STRING) revealed possible enrichment of reactome pathway entities. Additionally, novel therapy options, such as vimentin-antibody--drug conjugates, could be explored. Therefore, future studies with the two kinases as monotherapy/combination therapy are warranted.
Insights
Two kinase inhibitors, AT 9283 and WZ 3146, show promise in treating pancreatic ductal adenocarcinoma (PDAC) by inducing cell death and cell cycle arrest. These findings suggest new therapeutic strategies for this aggressive cancer.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Pancreatic ductal adenocarcinoma (PDAC) is an aggressive cancer with limited treatment options, often showing resistance to conventional therapies.
- There is an urgent need for novel therapeutic strategies to improve outcomes for PDAC patients.
Purpose of the Study:
- To screen kinase inhibitors for activity against PDAC cell lines.
- To investigate the molecular mechanisms of action of identified potent kinase inhibitors, AT 9283 (AT) and WZ 3146 (WZ), in PDAC cells.
Main Methods:
- Screening of kinase inhibitors in PANC-1 and BxPC-3 PDAC cell lines.
- Multilevel analysis (cellular, molecular, proteomic) of AT and WZ in PANC-1 cells.
- Assessment of apoptosis, cell cycle, reactive oxygen species, and proteomic profiles.
Main Results:
- AT and WZ demonstrated dose-dependent inhibition of PDAC cell viability.
- Both inhibitors induced apoptosis, cell cycle arrest, and impacted Bcl-2 expression.
- Proteomic analysis revealed differentially regulated proteins, suggesting potential for enhanced immunotherapy and combination therapies.
Conclusions:
- AT 9283 and WZ 3146 are potent kinase inhibitors with significant anti-PDAC activity.
- These inhibitors offer potential as monotherapy or in combination strategies, including with immunotherapy and standard chemotherapy.
- Further research into these kinase inhibitors and novel therapeutic approaches like antibody-drug conjugates is warranted for PDAC treatment.
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