Assessment of pharmacodynamic vascular response in a phase I trial of combretastatin A4 phosphate

Helen L Anderson1, Jeffrey T Yap, Mathew P Miller

  • 1Cancer Research United Kingdom Positron Emission Tomography Oncology Group, Hammersmith Hospital, United Kingdom, UK.

Abstract

Insights

Positron emission tomography (PET) effectively measured rapid, dose-dependent reductions in tumor perfusion and blood volume following combretastatin A4 phosphate (CA4P) administration. These findings demonstrate PET

Area of Science:

  • Oncology
  • Radiology
  • Pharmacology

Background:

  • Assessing novel vascular-targeting agents requires reliable pharmacodynamic endpoints.
  • Tumor vascular damage is a key indicator for agents like combretastatin A4 phosphate (CA4P).
  • Positron emission tomography (PET) offers a non-invasive method to evaluate tissue perfusion and blood volume.

Purpose of the Study:

  • To evaluate the effects of CA4P on tumor and normal tissue perfusion and blood volume using PET.
  • To establish PET as a pharmacodynamic endpoint for vascular-targeting agents in clinical trials.
  • To determine the dose-dependent vascular effects of CA4P in patients with advanced solid tumors.

Main Methods:

  • Phase I, accelerated-titration, dose-escalation study of CA4P (5 to 114 mg/m2) in patients with advanced solid tumors.
  • PET imaging using oxygen-15 (15O)-labeled water for perfusion and carbon monoxide (C15O) for blood volume.
  • Scans performed immediately before, and 30 minutes and 24 hours after CA4P infusion at each dose level.

Main Results:

  • Significant, dose-dependent reductions in tumor perfusion (up to -49%) and blood volume (up to -15%) were observed 30 minutes post-CA4P administration (doses ≥ 52 mg/m2).
  • Tumor vascular recovery was noted by 24 hours, but perfusion reductions remained significant at higher doses.
  • Borderline significant, transient reductions in spleen and kidney perfusion and blood volume were observed 30 minutes after CA4P administration.

Conclusions:

  • CA4P induces rapid and measurable changes in human tumor vasculature.
  • PET imaging provides a valuable tool for assessing the pharmacodynamic effects of CA4P on tumor perfusion.
  • These findings support the use of PET in evaluating vascular-targeting agents in oncology.

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