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Published on: February 6, 2015
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.
Purpose:
Clinical evaluation of novel agents that target tumor blood vessels requires pharmacodynamic end points that measure vascular damage. Positron emission tomography (PET) was used to measure the effects of the vascular targeting agent combretastatin A4 phosphate (CA4P) on tumor and normal tissue perfusion and blood volume.
Patients And Methods:
Patients with advanced solid tumors were enrolled onto part of a phase I, accelerated-titration, dose-escalation study. The effects of 5 to 114 mg/m2 CA4P on tumor, spleen, and kidney were investigated. Tissue perfusion was measured using oxygen-15 (15O)-labeled water and blood volume was measured using 15O-labeled carbon monoxide (C15O). Scans were performed immediately before, and 30 minutes and 24 hours after the first infusion of each dose level of CA4P. All statistical tests were two sided.
Results:
PET data were obtained for 13 patients with intrapatient dose escalation. Significant dose-dependent reductions were seen in tumor perfusion 30 minutes after CA4P administration (mean change, -49% at >or= 52 mg/m2; P =.0010). Significant reductions were also seen in tumor blood volume (mean change, -15% at >or= 52 mg/m2; P =.0070). Although by 24 hours there was tumor vascular recovery, for doses >or= 52 mg/m2 the reduction in perfusion remained significant (P =.013). Thirty minutes after CA4P administration borderline significant changes were seen in spleen perfusion (mean change, -35%; P =.018), spleen blood volume (mean change, -18%; P =.022), kidney perfusion (mean change, -6%; P =.026), and kidney blood volume (mean change, -6%; P =.014). No significant changes were seen at 24 hours in spleen or kidney.
Conclusion:
CA4P produces rapid changes in the vasculature of human tumors that can be assessed using PET measurements of tumor perfusion.
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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