Evaluation of Pharmacodynamic Responses to Cancer Therapeutic Agents Using DNA Damage Markers

Deborah F Wilsker1, Allison M Barrett2, Angie B Dull2

  • 1Clinical Pharmacodynamic Biomarkers Program, Applied/Developmental Research Directorate, Leidos Biomedical Research, Inc., Frederick National Laboratory for Cancer Research, Frederick, Maryland. kindersr@mail.nih.gov deborah.wilsker@nih.gov.

Abstract

Insights

This study quantifies DNA damage response (DDR) pathway activation using multiplex immunofluorescence assays in tumors after cancer treatment. Establishing biomarker thresholds confirms target engagement and guides therapy in colorectal cancer.

Area of Science:

  • Oncology
  • Molecular Biology
  • Biomarker Discovery

Background:

  • The DNA damage response (DDR) pathway is crucial for tumor cell survival and treatment resistance.
  • Accurate assessment of DDR activation is essential for confirming target engagement of anticancer therapies.

Purpose of the Study:

  • To evaluate the pharmacodynamic activation of the DDR pathway in tumors post-anticancer treatment.
  • To confirm target engagement of DNA-damaging agents using DDR biomarkers.

Main Methods:

  • Utilized a quantitative multiplex immunofluorescence assay (IFA) to simultaneously measure three DDR biomarkers: γH2AX, pS343-Nbs1, and Rad51.
  • Assessed the time course and spatial activation of DDR biomarkers in tumor tissues from xenograft models and human colorectal cancer biopsies.
  • Established clinically relevant thresholds for DDR biomarker activation using a colorectal cancer microarray.

Main Results:

  • Demonstrated marked intratumor heterogeneity in DDR biomarker activation, influenced by cell-cycle dependency.
  • Identified specific thresholds for γH2AX, pS343-Nbs1, and Rad51 indicating DDR activation in human colorectal cancer.
  • Showcased the utility of multiplex IFA in preclinical models and clinical specimens across various treatment types.

Conclusions:

  • The developed DDR multiplex IFA is clinically valuable for assessing treatment response in diverse preclinical and clinical settings.
  • Defined cutoffs for key DDR biomarkers enable robust interpretation despite patient and tumor heterogeneity.
  • Simultaneous assessment of multiple DDR biomarkers mitigates the risk of false negatives from suboptimal biopsy timing.

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