telcagepant
DrugSingle oral doses of telcagepant 1120 mg (Part I - Period 1) and 140 mg (Part I - Period 2; Part III - Period 1 and 2)
Other names: MK-0974
NCT Number: NCT01315847
The purpose of this study is to determine the receptor occupancy (RO) associated with telcagepant (MK-0974) administration based on displacement of [11C]MK-4232 from the CGRP receptors in the brain using PET. The study enrolled healthy participants (Part I) and migraine patients (Part III). Due to a protocol amendment, study Part II was not conducted.
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Notify Me18 year–65 year
All sexes
Interventional
Phase 1
For the 1120 mg (i.e., maximal) telcagepant dose, [11C]MK-4232 was administered and PET scan was started ~3 hours post telcagepant to coincide with the Tmax of the 1120 mg dose. For the 140 mg (i.e., therapeutic) telcagepant dose, [11C]MK-4232 was administered and PET scan was started ~2 hours post telcagepant to correspond with the timing of clinical efficacy measurements of telcagepant for migraine treatment in Phase III studies.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Single oral doses of telcagepant 1120 mg (Part I - Period 1) and 140 mg (Part I - Period 2; Part III - Period 1 and 2)
Other names: MK-0974
Single intravenous doses of ~300 MBq [11C]MK-4232 administered as a 5 minute infusion (Part I - Baseline, Period 1 and 2; Part III - Period 1 Baseline and Period 1, and Period 2 Baseline and Period 2)
Time frame: Up 14 days after the last dose of telcagepant and/or [11C]MK-4232 in Part I of study (Up to approximately 14 weeks)
Any AEs occurring among participants (all were healthy subjects) in Part I of study were recorded. An AE was defined as any unfavorable and unintended change in the structure, function or chemistry of the body temporally associated with study drug administration, whether or not considered related to the study drug. Any worsening (i.e., any clinically significant adverse change in frequency and/or intensity) of a preexisting condition which was temporally associated with the administration of the study drug, was also an AE.
Time frame: Up 14 days after the last dose of telcagepant and/or [11C]MK-4232 in Part III of study (Up to approximately 6 months)
Any AEs occurring among participants (all were migraine patients) in Part III of study were recorded. An AE was defined as any unfavorable and unintended change in the structure, function or chemistry of the body temporally associated with study drug administration, whether or not considered related to the study drug. Any worsening (i.e., any clinically significant adverse change in frequency and/or intensity) of a preexisting condition which was temporally associated with the administration of the study drug, was also an AE.
Time frame: Part I Baseline, at ~0-90 minutes after [11C]MK-4232 dose; and Part I, Period 1 post telcagepant, at ~0-90 minutes after [11C]MK-4232 dose
Brain CGRP RO post telcagepant was determined by change in [11C]MK-4232 PET tracer biokinetics at baseline and post telcagepant administration. Using PET brain images acquired over ~0-90 minutes after [11C]MK-4232 dose, regions of interest (ROIs) were drawn throughout cerebral cortex and white matter, striatum, thalamus, cerebellum and pons. The ROIs were projected onto all frames of the dynamic PET scans in order to generate [11C]MK-4232 tissue time-activity curves (TACs). Serial arterial blood samples for measurement of plasma radioactivity and [11C]MK-4232 concentrations were collected during the PET scans. These samples provided the arterial input function for a two-tissue compartmental model of [11C]MK-4232 tracer biokinetics. Total volume of distribution (VT), an index of receptor density, was estimated by fitting the two-tissue compartmental model to the PET [11C]MK-4232 TACs. Change in VT between baseline and post telcagepant PET studies was used to quantify the brain CGRP RO.
Time frame: Part I, Period 1 post telcagepant, at ~0-90 minutes after [11C]MK-4232 dose
In Part I, Period 1 blood samples for determination of plasma telcagepant concentrations were obtained prior to the telcagepant dose (time 0) and at 2, 3, 4 and 5 hours post telcagepant dose. The average plasma telcagepant concentration during the PET scan was determined, calculated as the area under the plasma telcagepant concentration versus time curve during the PET scanning interval divided by the duration of the PET scanning interval.
Time frame: Part I Baseline, at ~0-90 minutes after [11C]MK-4232 dose; and Part I, Period 2 post telcagepant, at ~0-90 minutes after [11C]MK-4232 dose
Brain CGRP RO post telcagepant was determined by change in [11C]MK-4232 PET tracer biokinetics at baseline and post telcagepant administration. Using PET brain images acquired over ~0-90 miniutes after [11C]MK-4232 dose, ROIs were drawn throughout the cerebral cortex and white matter, striatum, thalamus, cerebellum and pons. The ROIs were projected onto all frames of the dynamic PET scans in order to generate [11C]MK-4232 tissue TACs. Serial arterial blood samples for measurement of plasma radioactivity and [11C]MK-4232 concentrations were collected during the PET scans. These samples provided the arterial input function for a two-tissue compartmental model of [11C]MK-4232 tracer biokinetics. VT, an index of receptor density, was estimated by fitting the two-tissue compartmental model to the PET [11C]MK-4232 TACs. The change in VT between the baseline and post telcagepant PET studies was used to quantify the brain CGRP RO.
Time frame: Part 1, Period 2 post telcagepant, at ~0-90 minutes after [11C]MK-4232 dose
In Part I, Period 2 blood samples for determination of plasma telcagepant concentrations were obtained prior to the telcagepant dose (time 0) and at 1, 2, 3 and 4 hours post telcagepant dose. The average plasma telcagepant concentration during the PET scan was determined, calculated as the area under the plasma telcagepant concentration versus time curve during the PET scanning interval divided by the duration of the PET scanning interval.
Time frame: Part III, Period 1 Baseline, at ~0-90 minutes after [11C]MK-4232 dose; and Part III, Period 1 post telcagepant, at ~0-90 minutes after [11C]MK-4232 dose
Brain CGRP RO post telcagepant was determined by change in [11C]MK-4232 PET tracer biokinetics at baseline and post telcagepant administration. Using PET brain images acquired over ~0-90 minutes after [11C]MK-4232 dose, ROIs were drawn throughout the cerebral cortex and white matter, striatum, thalamus, cerebellum and pons. The ROIs were projected onto all frames of the dynamic PET scans in order to generate [11C]MK-4232 tissue TACs. Serial arterial blood samples for measurement of plasma radioactivity and [11C]MK-4232 concentrations were collected during the PET scans. These samples provided the arterial input function for a two-tissue compartmental model of [11C]MK-4232 tracer biokinetics. VT, an index of receptor density, was estimated by fitting the two-tissue compartmental model to the PET [11C]MK-4232 TACs. The change in VT between the baseline and post telcagepant PET studies was used to quantify the brain CGRP RO.
Time frame: Part III, Period 2 Baseline, at ~0-90 minutes after [11C]MK-4232 dose; and Part III, Period 2 post telcagepant, at ~0-90 minutes after [11C]MK-4232 dose
Brain CGRP RO post telcagepant was determined by change in [11C]MK-4232 PET tracer biokinetics at baseline and post telcagepant administration. Using PET brain images acquired over ~0-90 minutes after [11C]MK-4232 dose, ROIs were drawn throughout the cerebral cortex and white matter, striatum, thalamus, cerebellum and pons. The ROIs were projected onto all frames of the dynamic PET scans in order to generate [11C]MK-4232 tissue TACs. Serial arterial blood samples for measurement of plasma radioactivity and [11C]MK-4232 concentrations were collected during the PET scans. These samples provided the arterial input function for a two-tissue compartmental model of [11C]MK-4232 tracer biokinetics. VT, an index of receptor density, was estimated by fitting the two-tissue compartmental model to the PET [11C]MK-4232 TACs. The change in VT between the baseline and post telcagepant PET studies was used to quantify the brain CGRP RO.
Merck Sharp & Dohme LLC
Industry
A Three-Part Positron Emission Tomography Study of Brain CGRP Receptor Occupancy Levels Following Administration of MK-0974, Using [11C]MK-4232 as an Imaging Agent
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