Validation of a flow cytometry based G(2)M delay cell cycle assay for use in evaluating the pharmacodynamic response

Jose Estevam1, Hadi Danaee, Ray Liu

  • 1Millennium Pharmaceuticals, Inc. 40 Landsdowne St., Cambridge, MA 02139, USA. jose.estevam@mpi.com

Insights

This study validates a flow cytometry assay to measure cell cycle changes caused by anticancer drugs. The assay, using G(2)/M delay, is crucial for evaluating new molecularly targeted therapies in clinical trials.

Area of Science:

  • Oncology
  • Pharmacology
  • Biotechnology

Background:

  • Pharmacodynamic assays are vital for understanding anticancer drug efficacy.
  • Flow cytometry is a key technology for assessing cell cycle status.
  • Validated methods for flow cytometry-based cell cycle assays are lacking.

Purpose of the Study:

  • To validate a flow cytometry-based cell cycle G(2)/M delay assay.
  • To establish a reliable tool for clinical trials of novel anticancer agents.
  • To evaluate the investigational drug MLN8237, an Aurora A kinase inhibitor.

Main Methods:

  • Validated a flow cytometry assay measuring G(2)/M phase cell cycle delay.
  • Assessed assay parameters including robustness, repeatability, and reproducibility.
  • Utilized biostatistical models to determine the threshold for detecting drug effects.

Main Results:

  • The assay demonstrated acceptable intra-assay repeatability (<20%) and intra-donor variability (<40%).
  • Assay robustness was found to be less than 30%.
  • A 5.2% absolute change in %G(2)M was identified as the cutoff for a true drug effect.

Conclusions:

  • The validated flow cytometry assay is suitable for evaluating the pharmacodynamic effects of anticancer drugs in clinical trials.
  • The assay provides a reliable method for assessing MLN8237's impact on cell cycle progression.
  • This validated assay supports further in vivo testing of novel targeted therapies.

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