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Updated: Jun 8, 2026

Analysis of Cell Cycle Position in Mammalian Cells
Published on: January 21, 2012
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
Abstract:
Pharmacodynamic assays are important aspects for understanding molecularly targeted anticancer agents to investigate the relationship between drug concentration (pharmacokinetics) and drug "effect" or biological activity. As new drug entities are developed that affect DNA cell cycle, a pharmacodynamic assay which measures cell cycle perturbation would be a valuable clinical trial tool. During recent years, flow cytometry has established itself as a useful method to determine the relative nuclear DNA content and percentage of cycling cells of biological specimens. However to date, the analytical validation of cytometry based assays is limited and there is no suitable guidance for method validation of flow cytometry based cell cycle assays. Here we report the validation of a flow cytometry based cell cycle G(2)/M delay assay for use in evaluating the effect of investigational drug MLN8237, a small molecule inhibitor of a mitotic kinase Aurora A, for clinical trial use. The assay method was validated by examining assay robustness, repeatability, reproducibility, precision, and determining the cutoff for a true drug effect based on biostatistical analysis models. Experimental results show that the intra-assay repeatability was less than 20% with an intra-donor variability of less than 40%. The robustness of the assay was less than 30%. Since this is an ex-vivo stimulation assay, variability parameters were expected to be higher. Based on biostatistical modeling, an absolute change in %G(2)M of 5.2% (95% CI) was needed in order to detect a true drug effect. Overall, the assay demonstrated acceptable variability to warrant further in vivo testing.
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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