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Radiotracer Administration for High Temporal Resolution Positron Emission Tomography of the Human Brain: Application to FDG-fPET
Published on: October 22, 2019
Brain exposure of the ATM inhibitor AZD1390 in humans-a positron emission tomography study
Aurelija Jucaite1,2, Per Stenkrona2, Zsolt Cselényi1,2
1PET Science Centre, Precision Medicine and Biosamples, R&D, AstraZeneca, Stockholm, Sweden.
Background:
The protein kinase ataxia telangiectasia mutated (ATM) mediates cellular response to DNA damage induced by radiation. ATM inhibition decreases DNA damage repair in tumor cells and affects tumor growth. AZD1390 is a novel, highly potent, selective ATM inhibitor designed to cross the blood-brain barrier (BBB) and currently evaluated with radiotherapy in a phase I study in patients with brain malignancies. In the present study, PET was used to measure brain exposure of 11C-labeled AZD1390 after intravenous (i.v.) bolus administration in healthy subjects with an intact BBB.
Methods:
AZD1390 was radiolabeled with carbon-11 and a microdose (mean injected mass 1.21 µg) was injected in 8 male subjects (21-65 y). The radioactivity concentration of [11C]AZD1390 in brain was measured using a high-resolution PET system. Radioactivity in arterial blood was measured to obtain a metabolite corrected arterial input function for quantitative image analysis. Participants were monitored by laboratory examinations, vital signs, electrocardiogram, adverse events.
Results:
The brain radioactivity concentration of [11C]AZD1390 was 0.64 SUV (standard uptake value) and reached maximum 1.00% of injected dose at Tmax[brain] of 21 min (time of maximum brain radioactivity concentration) after i.v. injection. The whole brain total distribution volume was 5.20 mL*cm-3. No adverse events related to [11C]AZD1390 were reported.
Conclusions:
This study demonstrates that [11C]AZD1390 crosses the intact BBB and supports development of AZD1390 for the treatment of glioblastoma multiforme or other brain malignancies. Moreover, it illustrates the potential of PET microdosing in predicting and guiding dose range and schedule for subsequent clinical studies.
Insights
The novel drug AZD1390 successfully crosses the blood-brain barrier (BBB) in healthy subjects. This ATM inhibitor shows promise for treating brain cancers like glioblastoma multiforme.
Area of Science:
- Oncology
- Radiochemistry
- Pharmacology
Background:
- Ataxia telangiectasia mutated (ATM) protein kinase is crucial for DNA damage response and tumor growth.
- AZD1390 is a potent, selective ATM inhibitor designed for blood-brain barrier (BBB) penetration.
- AZD1390 is under investigation with radiotherapy for brain malignancies.
Purpose of the Study:
- To assess brain exposure of 11C-labeled AZD1390 in healthy subjects with an intact BBB.
- To evaluate the potential of PET microdosing for guiding AZD1390 clinical development.
Main Methods:
- AZD1390 was radiolabeled with carbon-11 and administered as a microdose intravenously to 8 healthy male subjects.
- Brain radioactivity concentration of [11C]AZD1390 was measured using PET.
- Arterial blood radioactivity was monitored to determine the input function for quantitative analysis.
Main Results:
- [11C]AZD1390 demonstrated brain radioactivity concentration of 0.64 SUV, peaking at 1.00% injected dose at 21 minutes.
- The whole brain total distribution volume was 5.20 mL*cm-3.
- No adverse events were associated with [11C]AZD1390 administration.
Conclusions:
- The study confirms that [11C]AZD1390 effectively crosses the intact BBB.
- Findings support AZD1390 development for glioblastoma multiforme and other brain cancers.
- PET microdosing shows potential for optimizing future clinical trial designs.
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