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June 12, 2014Investigational New Drugs575 citationsOpen Access

Preclinical characterization of the CDK4/6 inhibitor LY2835219: in-vivo cell cycle-dependent/independent anti-tumor activities alone/in combination with gemcitabine

LGLawrence M. GelbertIndiana University HealthSCShufen CaiUniversité de SherbrookeXLXi LinUniversity of Rochester Medical Center

Key Points

  • Characterize the pharmacological profile, in vivo antitumor efficacy, and mechanism of action of the CDK4/6 inhibitor LY2835219 alone and combined with gemcitabine.
  • Assessed in vitro kinase inhibition of CDK4/CDK6, Rb phosphorylation, and G1 cell cycle arrest in Rb-proficient human cancer cell lines.
  • Administered oral LY2835219 for up to 56 days in human tumor xenograft mouse models across diverse histologies, evaluating monotherapy and combination therapy with gemcitabine.
  • LY2835219 selectively inhibited CDK4 and CDK6 at low nanomolar potency, blocking Rb phosphorylation, inducing G1 arrest, and suppressing Rb-E2F-regulated proteins within 24 hours in vivo.
  • Oral monotherapy maintained sustained tumor growth inhibition for up to 56 days in xenograft-bearing mice without significant body weight loss or tumor outgrowth.
  • Combining LY2835219 with gemcitabine in Calu-6 xenografts enhanced antitumor activity independently of G1 arrest, accompanied by reduced ribonucleotide reductase expression.

Abstract

The G1 restriction point is critical for regulating the cell cycle and is controlled by the Rb pathway (CDK4/6-cyclin D1-Rb-p16/ink4a). This pathway is important because of its inactivation in a majority of human tumors. Transition through the restriction point requires phosphorylation of retinoblastoma protein (Rb) by CDK4/6, which are highly validated cancer drug targets. We present the identification and characterization of a potent CDK4/6 inhibitor, LY2835219. LY2835219 inhibits CDK4 and CDK6 with low nanomolar potency, inhibits Rb phosphorylation resulting in a G1 arrest and inhibition of proliferation, and its activity is specific for Rb-proficient cells. In vivo target inhibition studies show LY2835219 is a potent inhibitor of Rb phosphorylation, induces a complete cell cycle arrest and suppresses expression of several Rb-E2F-regulated proteins 24 hours after a single dose. Oral administration of LY2835219 inhibits tumor growth in human tumor xenografts representing different histologies in tumor-bearing mice. LY2835219 is effective and well tolerated when administered up to 56 days in immunodeficient mice without significant loss of body weight or tumor outgrowth. In calu-6 xenografts, LY2835219 in combination with gemcitabine enhanced in vivo antitumor activity without a G1 cell cycle arrest, but was associated with a reduction of ribonucleotide reductase expression. These results suggest LY2835219 may be used alone or in combination with standard-of-care cytotoxic therapy. In summary, we have identified a potent, orally active small-molecule inhibitor of CDK4/6 that is active in xenograft tumors. LY2835219 is currently in clinical development.

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Cite This Study

Gelbert et al. (2014) studied this question.

synapsesocial.com/papers/69d89a5d183921ebcaae2cc4https://doi.org/10.1007/s10637-014-0120-7
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