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Tyrosine kinase inhibitors: from rational design to clinical trials

P Traxler1, G Bold, E Buchdunger

  • 1Novartis Pharma AG, Oncology Research, CH-4002 Basel, Switzerland. peter.traxler@pharma.novartis.com

Insights

Targeting tyrosine kinases, crucial for cell growth, offers new cancer therapies. Three Novartis drugs, PKI166, PTK787/ZK222584, and STI571 (Gleevec), show promise in inhibiting kinases for cancer treatment.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Pharmacology

Background:

  • Protein kinases regulate critical cellular functions including proliferation and differentiation.
  • Inhibiting growth-related kinases, particularly tyrosine kinases, presents a promising therapeutic strategy for cancers.
  • The ATP-binding domain of tyrosine kinases is a validated target for drug design.

Purpose of the Study:

  • To describe successful drug design strategies at Novartis targeting tyrosine kinases.
  • To present three case studies of tyrosine kinase inhibitors developed for cancer therapy.

Main Methods:

  • Drug design targeting the ATP-binding domain of tyrosine kinases.
  • Preclinical evaluation including in vitro signaling inhibition, in vivo antitumor activity, and pharmacokinetic profiling.
  • Clinical trial data analysis for efficacy and safety.

Main Results:

  • PKI166 (pyrrolo[2,3,-d]pyrimidine) dual inhibitor of EGFR/ErbB2, showed antitumor activity and good bioavailability.
  • PTK787/ZK222584 (anilino-phthalazine) selectively inhibits KDR/Flt-1, possessing anti-angiogenic and oral bioavailability properties.
  • STI571 (Glivec, phenylamino-pyrimidine) potently inhibits Abl tyrosine kinase, demonstrating significant efficacy in chronic myelogenous leukemia (CML) with high response rates and potential for solid tumors.

Conclusions:

  • Tyrosine kinase inhibitors represent a significant advancement in targeted cancer therapy.
  • The described inhibitors (PKI166, PTK787/ZK222584, STI571) demonstrate potent preclinical and clinical efficacy.
  • Targeting specific tyrosine kinases offers a viable therapeutic approach for various cancers, including CML and solid tumors.

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