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The selective tyrosine kinase inhibitor STI571 inhibits small cell lung cancer growth
G W Krystal1, S Honsawek, J Litz
1Department of Medicine, Virginia Commonwealth University, McGuire Veterans Affairs Medical Center, Richmond 23249, USA. gkrystal@hsc.vcu.edu
Abstract:
At least 70% of small cell lung cancers express the Kit receptor tyrosine kinase and its ligand, stem cell factor (SCF). Numerous lines of evidence have demonstrated that this coexpression constitutes a functional autocrine loop, suggesting that inhibitors of Kit tyrosine kinase activity could have therapeutic efficacy in this disease. STI571, formerly known as CGP 57148B, is a p.o. bioavailable 2-phenylaminopyrimide derivative that was designed as an Abl tyrosine kinase inhibitor, but also has efficacy against the platelet-derived growth factor receptor and Kit in vitro. Pretreatment of the H526 small cell lung cancer (SCLC) cell line with STI571 inhibited SCF-mediated Kit activation with an IC50 of 0.1 microM as measured by inhibition of receptor tyrosine phosphorylation and 0.2 microM as measured by immune complex kinase assay. This paralleled the inhibition of SCF-mediated growth by STI571, which had an IC50 of approximately 0.3 microM. Growth inhibition in SCF-containing medium was accompanied by induction of apoptosis. STI571 efficiently blocked SCF-mediated activation of mitogen-activated protein kinase and Akt, but did not affect insulin-like growth factor-1 or serum-mediated mitogen-activated protein kinase or Akt activation. Growth of five of six SCLC cell lines in medium containing 10% FCS was inhibited by STI571 with an IC50 of approximately 5 microM. Growth inhibition in serum-containing medium appeared to be cytostatic in nature because no increase in apoptosis was observed. Despite this growth inhibition, STI571 failed to enhance the cytotoxicity of either carboplatinum or etoposide when coadministered. However, taken together with the minimal toxicity that this compound has shown in preclinical studies, these data suggest that STI571 could have a role in the treatment of SCLC, possibly to block or slow recurrence after chemotherapy-induced remissions.
Insights
STI571 inhibits Kit tyrosine kinase activity, showing promise for treating small cell lung cancer (SCLC). This drug effectively blocks cancer cell growth and induces apoptosis, suggesting a potential role in managing SCLC recurrence.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Small cell lung cancer (SCLC) frequently overexpresses the Kit receptor tyrosine kinase and its ligand, stem cell factor (SCF).
- This coexpression forms a functional autocrine loop, making Kit inhibitors potential therapeutic agents for SCLC.
- STI571 is a novel tyrosine kinase inhibitor with demonstrated activity against Kit.
Purpose of the Study:
- To investigate the efficacy of STI571 in inhibiting Kit activity and SCLC cell growth.
- To determine the effects of STI571 on downstream signaling pathways.
- To evaluate STI571's potential role in SCLC treatment, including its combination with chemotherapy.
Main Methods:
- Assessing STI571's inhibition of SCF-mediated Kit activation using receptor tyrosine phosphorylation and immune complex kinase assays.
- Evaluating STI571's effect on SCLC cell proliferation and apoptosis in vitro.
- Analyzing STI571's impact on mitogen-activated protein kinase (MAPK) and Akt signaling pathways.
- Testing STI571's efficacy in combination with carboplatin and etoposide.
Main Results:
- STI571 potently inhibited SCF-mediated Kit activation in H526 SCLC cells (IC50 of 0.1-0.2 microM).
- STI571 significantly inhibited SCF-mediated SCLC cell growth (IC50 ~0.3 microM) and induced apoptosis.
- STI571 blocked SCF-mediated MAPK and Akt activation but not IGF-1 or serum-mediated signaling.
- STI571 inhibited the growth of five of six SCLC cell lines in serum-containing medium (IC50 ~5 microM) via cytostatic mechanisms.
- STI571 did not enhance the cytotoxicity of carboplatin or etoposide.
Conclusions:
- STI571 effectively inhibits the Kit signaling pathway and SCLC cell proliferation.
- STI571 demonstrates potential as a therapeutic agent for SCLC, possibly by preventing recurrence after chemotherapy.
- Further investigation into STI571's role in SCLC treatment is warranted due to its efficacy and minimal preclinical toxicity.