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Research ArticleExperimental Studies

Development of Keratinocyte Growth Factor Receptor Tyrosine Kinase Inhibitors for the Treatment of Cancer

JOHN HACKETT, ZILI XIAO, XIAO-PING ZANG, MEGAN L. LERNER, DANIEL J. BRACKETT, ROBERT W. BRUEGGEMEIER, PUI-KAI LI and J. THOMAS PENTO
Anticancer Research November 2007, 27 (6B) 3801-3806;
JOHN HACKETT
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ZILI XIAO
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XIAO-PING ZANG
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MEGAN L. LERNER
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DANIEL J. BRACKETT
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ROBERT W. BRUEGGEMEIER
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PUI-KAI LI
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J. THOMAS PENTO
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  • For correspondence: tom-pento{at}ouhsc.edu
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Abstract

Background: The mammary glands of adult female animals are remarkably sensitive to keratinocyte growth factor (KGF). KGF acts at the KGF receptor (KGFR) to produce a rapid and profound stimulation of breast cancer cell proliferation and motility. Further, KGF-induced motility in breast cancer cells is mediated via the Erk1/2 signaling pathway. Thus, enhancement of KGF/KGFR signal transduction may be an early step in the metastatic progression of breast cancer. Receptor modeling of KGFR was used to identify selective KGFR tyrosine kinase inhibitor (TKI) molecules with high receptor affinity. The present study describes the synthesis and biological activity of three of the KGFR TKI compounds. Materials and Methods: Computer modeling of the KGFR was used to create a virtual library of compounds that have the potential to bind with high affinity to the KGFR. Three of these compounds were synthesized and tested in this study. The compounds were tested for their ability to inhibit KGF-mediated breast cancer cell proliferation and motility using a culture wounding assay. In addition, the effect of the most potent KGFR TKI compound on the relative density of cell membrane KGFR was measured using immunocytochemistry. Results: It was observed that the KGFR TKIs decreased KGF-mediated activity as predicted by computer modeling. In addition, the most potent inhibitor also reduced the density of the KGFR on the membrane of the cancer cells. Conclusion: The novel inhibitors identified in this project are selective KGFR inhibitors which appear to reduce the expression of KGFR on cancer cells. These results may lead to the development of a novel class of anticancer agents for the chemoprevention of metastatic cancer development and provide a new approach in the treatment of breast cancer.

  • Breast cancer
  • KGF
  • KGFR
  • tyrosine kinase inhibitor
  • cell migration

Footnotes

  • Received July 23, 2007.
  • Accepted August 1, 2007.
  • Copyright© 2007 International Institute of Anticancer Research (Dr. John G. Delinassios), All rights reserved
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Anticancer Research
Vol. 27, Issue 6B
November-December 2007
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Development of Keratinocyte Growth Factor Receptor Tyrosine Kinase Inhibitors for the Treatment of Cancer
JOHN HACKETT, ZILI XIAO, XIAO-PING ZANG, MEGAN L. LERNER, DANIEL J. BRACKETT, ROBERT W. BRUEGGEMEIER, PUI-KAI LI, J. THOMAS PENTO
Anticancer Research Nov 2007, 27 (6B) 3801-3806;

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Development of Keratinocyte Growth Factor Receptor Tyrosine Kinase Inhibitors for the Treatment of Cancer
JOHN HACKETT, ZILI XIAO, XIAO-PING ZANG, MEGAN L. LERNER, DANIEL J. BRACKETT, ROBERT W. BRUEGGEMEIER, PUI-KAI LI, J. THOMAS PENTO
Anticancer Research Nov 2007, 27 (6B) 3801-3806;
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