Dose and Schedule Determine Distinct Molecular Mechanisms Underlying the Efficacy of the p53-MDM2 Inhibitor HDM201

Sébastien Jeay1, Stéphane Ferretti2, Philipp Holzer3

  • 1Disease Area Oncology, Novartis Institutes for BioMedical Research, Basel, Switzerland.

Cancer Research
|August 24, 2018
PubMed

Insights

High-dose pulses of HDM201, a p53-MDM2 inhibitor, induce PUMA and apoptosis in wild-type p53 cancers. This pulsed regimen offers a distinct therapeutic mechanism compared to continuous exposure, guiding clinical trials.

Area of Science:

  • Oncology
  • Molecular Biology
  • Pharmacology

Background:

  • Targeting the p53-MDM2 interaction is a therapeutic strategy for p53 wild-type cancers.
  • HDM201 is a novel, potent, and selective inhibitor of the p53-MDM2 interaction.

Purpose of the Study:

  • To investigate the distinct mechanisms of therapeutic efficacy of HDM201 at various doses and schedules.
  • To define regimen-dependent mechanisms of p53-MDM2 inhibition.

Main Methods:

  • Utilized shRNA screens to identify mediators of the p53 response.
  • Administered HDM201 at continuous and pulsed high-dose regimens.
  • Analyzed apoptosis, p21 and PUMA induction, and Bcl-xL expression in vitro and in vivo.

Main Results:

  • Continuous HDM201 exposure induced p21 and delayed apoptosis.
  • High-dose pulses of HDM201 induced PUMA and rapid apoptosis, with PUMA identified as a key mediator.
  • HDM201 pulse dosing downregulated Bcl-xL, a key sensitizer, which was enriched in relapsing tumors.

Conclusions:

  • Regimen-dependent mechanisms exist for p53-MDM2 inhibitors, with pulsed high doses eliciting a potent proapoptotic response.
  • The findings support the clinical comparison of daily versus intermittent dosing regimens for HDM201 and similar agents.
  • The molecular mechanism of pulse dosing is likely reproducible in patients, offering guidance for current clinical trials.

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