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Effects of STI571 (gleevec) on pancreatic cancer cell growth
Junsheng Li1, Jörg Kleeff, Junchao Guo
1Department of General Surgery, University of Heidelberg, Im Neuenheimer Feld 110, 69120 Heidelberg, Germany. lijunsheng70@hotmail.com
Background:
Pancreatic cancer is an aggressive malignancy characterized by low responsiveness to chemotherapy and radiotherapy. This resistance is partly due to the overexpression of several tyrosine kinase receptors and their ligands. STI571 has specific activity in inhibiting c-kit, PDGF and Abl receptor tyrosine kinases and has proven successful in the treatment of CML and GIST patients. Here, we investigated the potential role of STI571 in pancreatic cancer.
Results:
The GI50 of STI571 as well as the effects of STI571 on growth factor actions in pancreatic cell lines were analyzed using the MTT assay. FACS analysis using Annexin and PI staining was performed to study cell cycle, apoptosis, and cell death. Western blot analysis was carried out to investigate MAP kinase and receptor tyrosine kinase phosphorylation. STI571 inhibited cell proliferation in pancreatic cancer cell lines with GI50 concentrations ranging from 17 to 31.5 microM. EGF, IGF-1, and FGF-2 but not PDGF exerted growth stimulatory effects in pancreatic cancer cell lines. STI571 only partly blocked these effects on cell growth, and did not abrogate growth factor-induced receptor and MAPK phosphorylation.
Conclusion:
Our data demonstrate that STI571 inhibits pancreatic cancer cell growth with high GI50 concentrations through tyrosine-kinase receptor independent pathways. The clinical application of STI571 in pancreatic cancer is therefore rather doubtful.
Insights
STI571, a tyrosine kinase inhibitor, showed limited efficacy in inhibiting pancreatic cancer cell proliferation. High concentrations were required, suggesting limited clinical application for this aggressive malignancy.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Pancreatic cancer exhibits resistance to conventional therapies.
- Overexpression of tyrosine kinase receptors contributes to treatment resistance.
- STI571 targets c-kit, PDGF, and Abl tyrosine kinases, with prior success in CML and GIST.
Purpose of the Study:
- To investigate the efficacy of STI571 in pancreatic cancer.
- To determine the mechanisms underlying STI571's effects on pancreatic cancer cells.
Main Methods:
- MTT assay for cell proliferation (GI50).
- FACS analysis for cell cycle, apoptosis, and cell death.
- Western blot for MAP kinase and receptor tyrosine kinase phosphorylation.
Main Results:
- STI571 inhibited pancreatic cancer cell proliferation with GI50 values between 17-31.5 microM.
- Growth factors EGF, IGF-1, and FGF-2 stimulated pancreatic cancer cell growth.
- STI571 partially inhibited growth factor effects and did not block receptor/MAPK phosphorylation.
Conclusions:
- STI571 inhibits pancreatic cancer cell growth via tyrosine-kinase receptor-independent pathways.
- High GI50 concentrations suggest limited clinical utility of STI571 in pancreatic cancer.
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