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1.
J Labelled Comp Radiopharm ; 64(4): 159-167, 2021 04.
Article in English | MEDLINE | ID: mdl-33226657

ABSTRACT

The cathepsin K (CatK) enzyme is abundantly expressed in osteoclasts, and CatK inhibitors have been developed for the treatment of osteoporosis. In our effort to support discovery and clinical evaluations of a CatK inhibitor, we sought to discover a radioligand to determine target engagement of the enzyme by therapeutic candidates using positron emission tomography (PET). L-235, a potent and selective CatK inhibitor, was labeled with carbon-11. PET imaging studies recording baseline distribution of [11 C]L-235, and chase and blocking studies using the selective CatK inhibitor MK-0674 were performed in juvenile and adult nonhuman primates (NHP) and ovariectomized rabbits. Retention of the PET tracer in regions expected to be osteoclast-rich compared with osteoclast-poor regions was examined. Increased retention of the radioligand was observed in osteoclast-rich regions of juvenile rabbits and NHP but not in the adult monkey or adult ovariectomized rabbit. Target engagement of CatK was observed in blocking studies with MK-0674, and the radioligand retention was shown to be sensitive to the level of MK-0674 exposure. [11 C]L-235 can assess target engagement of CatK in bone only in juvenile animals. [11 C]L-235 may be a useful tool for guiding the discovery of CatK inhibitors.


Subject(s)
Cathepsin K/antagonists & inhibitors , Osteoporosis/diagnostic imaging , Positron Emission Tomography Computed Tomography/methods , Radiopharmaceuticals/pharmacokinetics , Animals , Bone and Bones/diagnostic imaging , Carbon Radioisotopes/chemistry , Cysteine Proteinase Inhibitors/chemistry , Drug Evaluation, Preclinical , Female , Ligands , Macaca mulatta , Protein Binding , Rabbits , Radiopharmaceuticals/adverse effects , Radiopharmaceuticals/chemistry , Tissue Distribution
2.
Bioorg Med Chem Lett ; 25(21): 4893-4898, 2015 Nov 01.
Article in English | MEDLINE | ID: mdl-26077491

ABSTRACT

Phosphodiesterase 10A (PDE10A) inhibition has recently been identified as a potential mechanism to treat multiple symptoms that manifest in schizophrenia. In order to facilitate preclinical development and support key proof-of-concept clinical trials of novel PDE10A inhibitors, it is critical to discover positron emission tomography (PET) tracers that enable plasma concentration/PDE10A occupancy relationships to be established across species with structurally diverse PDE10A inhibitors. In this Letter, we describe how a high-throughput screening hit was optimized to provide [(11)C]MK-8193 (8j), a PET tracer that supports the determination of plasma concentration/PDE10A occupancy relationships for structurally diverse series of PDE10A inhibitors in both rat and rhesus monkey.


Subject(s)
Drug Discovery , Heterocyclic Compounds, 2-Ring/chemistry , Phosphodiesterase Inhibitors/metabolism , Phosphodiesterase Inhibitors/pharmacology , Phosphoric Diester Hydrolases/metabolism , Positron-Emission Tomography , Animals , Brain/metabolism , Carbon Radioisotopes , Crystallography, X-Ray , Dose-Response Relationship, Drug , Heterocyclic Compounds, 2-Ring/chemical synthesis , Macaca mulatta , Models, Molecular , Molecular Structure , Phosphodiesterase Inhibitors/chemical synthesis , Phosphodiesterase Inhibitors/chemistry , Phosphoric Diester Hydrolases/blood , Rats , Structure-Activity Relationship
3.
Neuroimage ; 68: 1-10, 2013 Mar.
Article in English | MEDLINE | ID: mdl-23238431

ABSTRACT

Antagonism of the central opioid receptor like-1 receptor (ORL1) has been implicated in cognition, and has been a focus of drug discovery efforts to ameliorate the cognitive deficits that remain during the stable treatment of schizophrenia with current antipsychotics. In order to facilitate dose selection for phase II clinical testing an ORL1-specific PET tracer was developed to determine drug plasma concentration versus occupancy relationships in order to ensure that the doses selected and the degree of target engagement were sufficient to ensure adequate proof of concept testing. MK-0911 is a selective, high affinity antagonist for the ORL1 receptor radiolabeled with high specific activity (18)F for positron emission tomography (PET) studies. Evaluation of [(18)F]MK-0911 in rhesus monkey PET studies showed a pattern of brain uptake which was consistent with the known distribution of ORL1. In vitro autoradiography with [(18)F]MK-0911 in rhesus monkey and human brain tissue slices showed a regional distribution that was consistent with in vivo imaging results in monkey. Pre-treatment of rhesus monkeys with high doses of structurally diverse ORL1 antagonists MK-0584, MK-0337, or MK-5757 achieved blockade of [(18)F]MK-0911 in all gray matter regions. Baseline PET studies with [(18)F]MK-0911 in healthy human subjects showed tracer distribution and kinetics similar to that observed in rhesus monkey. Quantification of [(18)F]MK-0911 uptake in repeat human baseline PET studies showed a test-retest variability in volume of distribution (V(T)) averaging 3% across brain regions. Humans dosed orally with MK-5757 showed reduced [(18)F]MK-0911 tracer concentration in brain proportional with MK-5757 dose and plasma level. [(18)F]MK-0911 was useful for determining MK-5757-induced receptor occupancy of ORL1 to guide MK-5757 dose-selection for clinical proof-of-concept studies. Additionally, [(18)F]MK-0911 may be a useful tool for studying the pharmacology of ORL1 in various human populations and disease states.


Subject(s)
Benzimidazoles/pharmacokinetics , Brain/diagnostic imaging , Fluorine Radioisotopes/pharmacokinetics , Piperidines/pharmacokinetics , Positron-Emission Tomography/methods , Radiopharmaceuticals/pharmacokinetics , Receptors, Opioid/metabolism , Adult , Animals , Benzimidazoles/chemistry , Brain/metabolism , Fluorine Radioisotopes/chemistry , Humans , Macaca mulatta , Male , Middle Aged , Piperidines/chemistry , Radiopharmaceuticals/chemistry , Tissue Distribution , Young Adult , Nociceptin Receptor
4.
J Pharmacol Exp Ther ; 347(2): 478-86, 2013 Nov.
Article in English | MEDLINE | ID: mdl-23975906

ABSTRACT

Calcitonin gene-related peptide (CGRP) is a potent neuropeptide whose agonist interaction with the CGRP receptor (CGRP-R) in the periphery promotes vasodilation, neurogenic inflammation and trigeminovascular sensory activation. This process is implicated in the cause of migraine headaches, and CGRP-R antagonists in clinical development have proven effective in treating migraine-related pain in humans. CGRP-R is expressed on blood vessel smooth muscle and sensory trigeminal neurons and fibers in the periphery as well as in the central nervous system. However, it is not clear what role the inhibition of central CGRP-R plays in migraine pain relief. To this end, the CGRP-R positron emission tomography (PET) tracer [(11)C]MK-4232 (2-[(8R)-8-(3,5-difluorophenyl)-6,8-[6-(11)C]dimethyl-10-oxo-6,9-diazaspiro[4.5]decan-9-yl]-N-[(2R)-2'-oxospiro[1,3-dihydroindene-2,3'-1H-pyrrolo[2,3-b]pyridine]-5-yl]acetamide) was discovered and developed for use in clinical PET studies. In rhesus monkeys and humans, [(11)C]MK-4232 displayed rapid brain uptake and a regional brain distribution consistent with the known distribution of CGRP-R. Monkey PET studies with [(11)C]MK-4232 after intravenous dosing with CGRP-R antagonists validated the ability of [(11)C]MK-4232 to detect changes in CGRP-R occupancy in proportion to drug plasma concentration. Application of [(11)C]MK-4232 in human PET studies revealed that telcagepant achieved only low receptor occupancy at an efficacious dose (140 mg PO). Therefore, it is unlikely that antagonism of central CGRP-R is required for migraine efficacy. However, it is not known whether high central CGRP-R antagonism may provide additional therapeutic benefit.


Subject(s)
Acetanilides/pharmacokinetics , Analgesics/pharmacokinetics , Azepines/pharmacokinetics , Brain/metabolism , Calcitonin Gene-Related Peptide Receptor Antagonists , Imidazoles/pharmacokinetics , Positron-Emission Tomography/methods , Radiopharmaceuticals/pharmacokinetics , Spiro Compounds/pharmacokinetics , Acetanilides/chemistry , Adult , Analgesics/therapeutic use , Animals , Azepines/therapeutic use , Brain/diagnostic imaging , Carbon Radioisotopes , Female , Humans , Imidazoles/therapeutic use , Macaca mulatta , Male , Middle Aged , Migraine Disorders/drug therapy , Migraine Disorders/metabolism , Molecular Structure , Protein Binding , Radiopharmaceuticals/chemistry , Species Specificity , Spiro Compounds/chemistry , Tissue Distribution , Young Adult
5.
Neuroimage ; 59(3): 2589-99, 2012 Feb 01.
Article in English | MEDLINE | ID: mdl-21930214

ABSTRACT

BACKGROUND: Glycine transporter 1 (GlyT1) inhibitors have emerged as potential treatments for schizophrenia due to their potentiation of NMDA receptor activity by modulating the local concentrations of the NMDA co-agonist glycine. [18F]MK-6577 is a potent and selective GlyT1 inhibitor PET tracer. Although differences in ligand kinetics can be expected between non-human primates and humans, the tracer pre-clinical evaluation can provide valuable information supporting protocol design and quantification in the clinical space. The main objective of this work was to evaluate the in vivo kinetics of [18F]MK-6577 in rhesus monkey brain. Additionally, a method for estimating the tracer input function from the tracer brain tissue kinetics and venous sampling was validated. This technique was applied for determination of the dose-occupancy relationship of a GlyT1 inhibitor in monkey brain. METHODS: Compartmental and Logan graphical analysis were utilized for quantification of the [18F]MK-6577 binding using the measured tracer arterial input function. The stability of the tracer volume of distribution relative to scan length was assessed. The proposed model-based input function method takes advantage of the agreement between the tracer concentration in arterial and venous plasma from ~5 min. The approach estimates the initial peak of the input curve by adding a gamma like function term to the measured venous curve. The parameters of the model function were estimated by simultaneously fitting several brain time activity curves to a compartmental model. RESULTS: Good agreement was found between the model-based and the measured arterial plasma curve and the corresponding distribution volumes. The Logan analysis was the preferred method of analysis providing reliable and stable volume of distribution and occupancy results using a 90 and possibly 60 min scan length. CONCLUSION: The model-based input function method and Logan analysis are well suited for quantification of [18F]MK-6577 binding and GlyT1 occupancy in monkey brain.


Subject(s)
Brain Chemistry/physiology , Brain/diagnostic imaging , Excitatory Amino Acid Agonists , Glycine Plasma Membrane Transport Proteins/metabolism , Algorithms , Animals , Corpus Striatum/diagnostic imaging , Dose-Response Relationship, Drug , Excitatory Amino Acid Agonists/pharmacokinetics , Fluorine Radioisotopes , Glycine Plasma Membrane Transport Proteins/analysis , Image Processing, Computer-Assisted , Macaca mulatta , Models, Neurological , Models, Statistical , Positron-Emission Tomography , Receptors, N-Methyl-D-Aspartate/physiology , Thalamus/diagnostic imaging
6.
Sci Transl Med ; 14(627): eabg3684, 2022 01 12.
Article in English | MEDLINE | ID: mdl-35020407

ABSTRACT

Positron emission tomography (PET) ligands play an important role in the development of therapeutics by serving as target engagement or pharmacodynamic biomarkers. Here, we describe the discovery and translation of the PET tracer [11C]MK-6884 from rhesus monkeys to patients with Alzheimer's disease (AD). [3H]MK-6884/[11C]MK-6884 binds with high binding affinity and good selectivity to an allosteric site on M4 muscarinic cholinergic receptors (M4Rs) in vitro and shows a regional distribution in the brain consistent with M4R localization in vivo. The tracer demonstrates target engagement of positive allosteric modulators of the M4R (M4 PAMs) through competitive binding interactions. [11C]MK-6884 binding is enhanced in vitro by the orthosteric M4R agonist carbachol and indirectly in vivo by the acetylcholinesterase inhibitor donepezil in rhesus monkeys and healthy volunteers, consistent with its pharmacology as a highly cooperative M4 PAM. PET imaging of [11C]MK-6884 in patients with AD identified substantial regional differences quantified as nondisplaceable binding potential (BPND) of [11C]MK-6884. These results suggest that [11C]MK-6884 is a useful target engagement biomarker for M4 PAMs but may also act as a sensitive probe of neuropathological changes in the brains of patients with AD.


Subject(s)
Alzheimer Disease , Acetylcholinesterase , Alzheimer Disease/diagnostic imaging , Animals , Humans , Macaca mulatta , Positron-Emission Tomography/methods , Receptors, Muscarinic
7.
Synapse ; 65(2): 125-35, 2011 Feb.
Article in English | MEDLINE | ID: mdl-20524178

ABSTRACT

Two moderately lipophilic, high affinity ligands for metabotropic glutamate receptor subtype 1 (mGluR1) were radiolabeled with a positron-emitting radioisotope and evaluated in rhesus monkey as potential PET tracers. Both ligands were radiolabeled with fluorine-18 via nucleophilic displacement of the corresponding 2-chloropyridine precursor with [¹8F]potassium fluoride. [¹8F]MK-1312 was found to have a suitable signal for quantification of mGluR1 receptors in nonhuman primates and was more thoroughly characterized. In vitro autoradiographic studies with [¹8F]MK-1312 in rhesus monkey and human brain tissue slices revealed an uptake distribution consistent with the known distribution of mGluR1, with the highest uptake in the cerebellum, moderate uptake in the hippocampus, thalamus, and cortical regions, and lowest uptake in the caudate and putamen. In vitro saturation binding studies in rhesus monkey and human cerebellum homogenates confirmed that [¹8F]MK-1312 binds to a single site with a B(max) /K(d) ratio of 132 and 98, respectively. PET studies in rhesus monkey with [¹8F]MK-1312 showed high brain uptake and a regional distribution consistent with in vitro autoradiography results. Blockade of [¹8F]MK-1312 uptake with mGluR1 allosteric antagonist MK-5435 dose-dependently reduced tracer uptake in all regions of gray matter to a similarly low level of tracer uptake. This revealed a large specific signal useful for determination of mGluR1 receptor occupancy in rhesus monkey. Taken together, these results are promising for clinical PET studies with [¹8F]MK-1312 to determine mGluR1 occupancy of MK-5435.


Subject(s)
Brain/drug effects , Brain/diagnostic imaging , Excitatory Amino Acid Agents , Positron-Emission Tomography , Receptors, Metabotropic Glutamate/metabolism , Animals , Autoradiography/methods , Binding Sites/drug effects , Brain/metabolism , Brain Mapping , Dose-Response Relationship, Drug , Excitatory Amino Acid Agents/chemical synthesis , Excitatory Amino Acid Agents/chemistry , Excitatory Amino Acid Agents/pharmacokinetics , Fluorine Radioisotopes/chemistry , Fluorine Radioisotopes/pharmacokinetics , Humans , Indoles/chemical synthesis , Indoles/pharmacokinetics , Inhibitory Concentration 50 , Ligands , Macaca mulatta , Tissue Distribution , Triazoles/chemical synthesis , Triazoles/pharmacokinetics
8.
Synapse ; 65(4): 261-70, 2011 Apr.
Article in English | MEDLINE | ID: mdl-20687108

ABSTRACT

Two positron emission tomography radiotracers for the glycine transporter 1 (GlyT1) are reported here. Each radiotracer is a propylsulfonamide-containing benzamide and was labeled with either carbon-11 or fluorine-18. [¹¹C]CMPyPB was synthesized by the alkylation of a 3-hydroxypyridine precursor using [¹¹C]MeI, and [¹8F]MK-6577 was synthesized by a nucleophilic aromatic substitution reaction using a 2-chloropyridine precursor. Each tracer shows good uptake into rhesus monkey brain with the expected distribution of highest uptake in the pons, thalamus, and cerebellum and lower uptake in the striatum and gray matter of the frontal cortex. In vivo blockade and chase studies of [¹8F]MK-6577 showed a large specific signal and reversible binding. In vitro autoradiographic studies with [¹8F]MK-6577 showed a large specific signal in both rhesus monkey and human brain slices and a distribution consistent with the in vivo results and those reported in the literature. In vivo metabolism studies in rhesus monkeys demonstrated that only more-polar metabolites are formed for each tracer. Of these two tracers, [¹8F]MK-6577 was more extensively characterized and is a promising clinical positron emission tomography tracer for imaging GlyT1 and for measuring GlyT1 occupancy of therapeutic compounds.


Subject(s)
Benzamides/chemical synthesis , Carbon Radioisotopes , Fluorine Radioisotopes , Glycine Plasma Membrane Transport Proteins/blood , Positron-Emission Tomography/methods , Pyridines/chemical synthesis , Sulfonamides/chemical synthesis , Animals , Benzamides/blood , Carbon Radioisotopes/blood , Cell Line , Drug Evaluation, Preclinical/methods , Fluorine Radioisotopes/blood , Glycine Plasma Membrane Transport Proteins/metabolism , Humans , Macaca mulatta , Pyridines/blood , Sulfonamides/blood
9.
Mol Imaging Biol ; 22(1): 173-180, 2020 02.
Article in English | MEDLINE | ID: mdl-31111397

ABSTRACT

PURPOSE: [18F]MK-6240 is a selective, high-affinity positron emission tomography tracer for imaging neurofibrillary tangles, a key pathological signature that correlates with cognitive decline in Alzheimer disease. This report provides safety information from preclinical toxicology studies and first-in-human whole-body biodistribution and dosimetry studies of [18F]MK-6240 for its potential application in human brain imaging studies. PROCEDURES: MK-6240 was administered intravenously (IV) in a 7-day rat toxicity study at × 50, × 100, and × 1000 dose margins relative to projected highest clinical dose of 0.333 µg/kg. The IV formulation of MK-6240 for clinical use and the formulation used in the 7-day rat toxicity study was tested for hemolysis potential in human and Wistar rat whole blood. Sequential whole-body positron emission tomography scans were performed in three healthy young subjects after IV bolus injection of 180 ± 0.3 MBq [18F]MK-6240 to characterize organ biodistribution and estimate whole-body radiation exposure (effective dose). RESULTS: MK-6240 administered IV in a 7-day rat toxicity study did not show any test article-related changes. The no-observed-adverse-effect level in rats was ≥ 333 µg/kg/day which provides a margin 1000-fold over an anticipated maximum clinical dose of 0.333 µg/kg. Additionally, the MK-6240 formulation was not hemolytic in human or Wistar rat blood. [18F]MK-6240 activity was widely distributed to the brain and the rest of the body, with organ absorbed doses largest for the gall bladder (202 µGy/MBq). The average (±SD) effective dose was 29.4 ± 0.6 µSv/MBq, which is in the typical range for F-18 radiolabeled ligands. CONCLUSIONS: Microdoses of [18F]MK-6240 are safe for clinical positron emission tomography imaging studies. Single IV administration of 185 MBq (5 mCi) [18F]MK-6240 is anticipated to result in a total human effective dose of 5.4 mSv and thus allows multiple positron emission tomography scans of the same subject per year.


Subject(s)
Alzheimer Disease/pathology , Fluorine Radioisotopes/pharmacokinetics , Isoquinolines/pharmacokinetics , Neurofibrillary Tangles/pathology , Positron Emission Tomography Computed Tomography/methods , Radiometry/methods , Whole Body Imaging/methods , Alzheimer Disease/diagnostic imaging , Alzheimer Disease/metabolism , Animals , Female , Healthy Volunteers , Humans , Male , Neurofibrillary Tangles/metabolism , Patient Safety , Radiopharmaceuticals/pharmacokinetics , Rats , Rats, Wistar , Tissue Distribution
10.
J Med Chem ; 63(5): 2411-2425, 2020 03 12.
Article in English | MEDLINE | ID: mdl-32101422

ABSTRACT

The measurement of receptor occupancy (RO) using positron emission tomography (PET) has been instrumental in guiding discovery and development of CNS directed therapeutics. We and others have investigated muscarinic acetylcholine receptor 4 (M4) positive allosteric modulators (PAMs) for the treatment of symptoms associated with neuropsychiatric disorders. In this article, we describe the synthesis, in vitro, and in vivo characterization of a series of central pyridine-related M4 PAMs that can be conveniently radiolabeled with carbon-11 as PET tracers for the in vivo imaging of an allosteric binding site of the M4 receptor. We first demonstrated its feasibility by mapping the receptor distribution in mouse brain and confirming that a lead molecule 1 binds selectively to the receptor only in the presence of the orthosteric agonist carbachol. Through a competitive binding affinity assay and a number of physiochemical properties filters, several related compounds were identified as candidates for in vivo evaluation. These candidates were then radiolabeled with 11C and studied in vivo in rhesus monkeys. This research eventually led to the discovery of the clinical radiotracer candidate [11C]MK-6884.


Subject(s)
Allosteric Regulation/drug effects , Muscarinic Agonists/pharmacology , Pyridines/pharmacology , Receptor, Muscarinic M4/agonists , Animals , CHO Cells , Carbon Radioisotopes/chemistry , Carbon Radioisotopes/pharmacology , Cricetulus , Humans , Macaca mulatta , Muscarinic Agonists/chemistry , Neurodegenerative Diseases/diagnostic imaging , Neurodegenerative Diseases/drug therapy , Neurodegenerative Diseases/metabolism , Positron-Emission Tomography , Pyridines/chemistry , Receptor, Muscarinic M4/metabolism
11.
J Nucl Med ; 60(1): 107-114, 2019 01.
Article in English | MEDLINE | ID: mdl-29880509

ABSTRACT

18F-MK-6240 (18F-labeled 6-(fluoro)-3-(1H-pyrrolo[2,3-c]pyridin-1-yl)isoquinolin-5-amine) is a highly selective, subnanomolar-affinity PET tracer for imaging neurofibrillary tangles (NFTs). Plasma kinetics, brain uptake, and preliminary quantitative analysis of 18F-MK-6240 in healthy elderly (HE) subjects, subjects with clinically probable Alzheimer disease (AD), and subjects with amnestic mild cognitive impairment were characterized in a study that is, to our knowledge, the first to be performed on humans. Methods: Dynamic PET scans of up to 150 min were performed on 4 cognitively normal HE subjects, 4 AD subjects, and 2 amnestic mild cognitive impairment subjects after a bolus injection of 152-169 MBq of 18F-MK-6240 to evaluate tracer kinetics and distribution in brain. Regional SUV ratio (SUVR) and distribution volume ratio were determined using the cerebellar cortex as a reference region. Total distribution volume was assessed by compartmental modeling using radiometabolite-corrected input function in a subgroup of 6 subjects. Results:18F-MK-6240 had rapid brain uptake with a peak SUV of 3-5, followed by a uniformly quick washout from all brain regions in HE subjects; slower clearance was observed in regions commonly associated with NFT deposition in AD subjects. In AD subjects, SUVR between 60 and 90 min after injection was high (approximately 2-4) in regions associated with NFT deposition, whereas in HE subjects, SUVR was approximately 1 across all brain regions, suggesting high tracer selectivity for binding NFTs in vivo. 18F-MK-6240 total distribution volume was approximately 2- to 3-fold higher in neocortical and medial temporal brain regions of AD subjects than in HE subjects and stabilized by 60 min in both groups. Distribution volume ratio estimated by the Logan reference tissue model or compartmental modeling correlated well (R2 > 0.9) to SUVR from 60 to 90 min for AD subjects. Conclusion:18F-MK-6240 exhibited favorable kinetics and high binding levels to brain regions with a plausible pattern for NFT deposition in AD subjects. In comparison, negligible tracer binding was observed in HE subjects. This pilot study suggests that simplified ratio methods such as SUVR can be used to quantify NFT binding. These results support further clinical development of 18F-MK-6240 for potential application in longitudinal studies.


Subject(s)
Alzheimer Disease/diagnostic imaging , Alzheimer Disease/pathology , Brain/pathology , Fluorine Radioisotopes , Isoquinolines/metabolism , Neurofibrillary Tangles/metabolism , Positron-Emission Tomography , Aged , Aged, 80 and over , Alzheimer Disease/metabolism , Brain/diagnostic imaging , Brain/metabolism , Case-Control Studies , Female , Humans , Isoquinolines/blood , Kinetics , Magnetic Resonance Imaging , Male , Middle Aged , Pilot Projects , Radioactive Tracers
12.
Article in English | MEDLINE | ID: mdl-16765656

ABSTRACT

Two stability challenges were encountered during development of an urine assay for a proliferator-activated receptor (PPAR) agonist, I (2-{[5,7-dipropyl-3-(trifluoromethyl)-1,2-benzisoxazol-6-yl]oxy}-2-methyl propionic acid), indicated for the treatment of Type II diabetes. First, the analyte was lost in urine samples due to adsorption on container surface which is a common problem during clinical sample handling. Secondly, the acylglucuronide metabolite (III), a major metabolite of I, displayed limited stability and effected the quantitation of parent drug due to the release of I through hydrolysis. Therefore, a clinical collection procedure was carefully established to stabilize I and its acylglucuronide metabolite, III, in human urine. The metabolite was not quantitated with this method. The urine samples are treated with bovine serum albumin (BSA) equal to 1.75% of the urine volume and formic acid equal to 1% of urine volume. Compound (I) and internal standard (II) were extracted from urine with 1 mL ethyl acetate using a fully automated liquid-liquid extraction in 96-well plate format. The analytes are separated by reverse phase high-performance liquid chromatography (HPLC) with tandem mass spectrometry in multiple-reaction-monitoring (MRM) mode used for detection. The urine method has a lower limit of quantitation (LLOQ) of 0.05 ng/mL with a linearity range of 0.05-20 ng/mL using 0.05 mL of urine. The method was validated and used to assay urine clinical samples.


Subject(s)
Chromatography, High Pressure Liquid/methods , Isoxazoles/urine , Mass Spectrometry/methods , Peroxisome Proliferator-Activated Receptors/agonists , Propionates/urine , Humans , Isoxazoles/metabolism , Isoxazoles/pharmacology , Molecular Structure , Propionates/metabolism , Propionates/pharmacology , Reproducibility of Results
13.
Drugs R D ; 7(2): 99-110, 2006.
Article in English | MEDLINE | ID: mdl-16542056

ABSTRACT

BACKGROUND: The objective of these studies was to evaluate the pharmacokinetics and pharmacodynamics of MK-0767, a prototypical dual peroxisome proliferator-activated receptor (PPAR) alpha/gamma agonist, following administration of single and multiple oral doses in healthy male subjects. METHODS: The first study was a double-blind, randomised, placebo-controlled, alternating two-panel, rising dose protocol in which single doses of 1-80 mg of MK-0767 were administered. The second study was a double-blind, randomised, placebo-controlled, staggered incremental dose, parallel-group protocol in which multiple doses of 0.3-25 mg of MK-0767 were administered once daily for 14 days. In both studies at each dose level, six subjects received MK-0767 and two subjects received placebo. RESULTS: Plasma area under the concentration-time curve and maximum plasma concentration increased with single and multiple doses of MK-0767 over the dose ranges studied. The apparent terminal half-life of MK-0767 averaged approximately 36 hours following single and multiple doses. Steady-state plasma concentrations were achieved following approximately 8 days of multiple doses. Compared with placebo, MK-0767 produced dose-dependent reductions in triglycerides (-26 +/- 8% [p = 0.002] and -33 +/- 13% [p = 0.008]) and free fatty acids (-50 +/- 11% [p < 0.001] and -67 +/- 23% [p = 0.008]) following single and multiple doses, respectively. Significant (p < or = 0.050) dose-dependent alterations in adiponectin (332 +/- 36%), low-density lipoprotein cholesterol (-29 +/- 5%), total cholesterol (-19 +/- 3%), non-high-density lipoprotein cholesterol (-28 +/- 4%), and fasting plasma glucose (-6 +/- 2%; only in the 25 mg group) were observed after multiple doses. CONCLUSIONS: The observed effects of MK-0767 on adiponectin, free fatty acids and lipids, even after single doses, demonstrate that this prototypical dual PPAR alpha/gamma agonist has clinically meaningful activity in vivo.


Subject(s)
Adiponectin/blood , Lipids/blood , PPAR alpha/agonists , PPAR gamma/agonists , Thiazoles/pharmacology , Adolescent , Adult , Area Under Curve , Blood Glucose/metabolism , Cholesterol/blood , Cholesterol, HDL/blood , Cholesterol, LDL/blood , Diarrhea/chemically induced , Dose-Response Relationship, Drug , Double-Blind Method , Fatigue/chemically induced , Fatty Acids, Nonesterified/blood , Headache/chemically induced , Humans , Hypolipidemic Agents/adverse effects , Hypolipidemic Agents/pharmacokinetics , Hypolipidemic Agents/pharmacology , Insulin/blood , Male , Middle Aged , Thiazoles/blood , Thiazoles/pharmacokinetics , Triglycerides/blood
14.
Mol Imaging Biol ; 18(4): 579-87, 2016 08.
Article in English | MEDLINE | ID: mdl-26596571

ABSTRACT

PURPOSE: A positron emission tomography (PET) tracer for the enzyme phosphodiesterase 10A (PDE10A) is desirable to guide the discovery and development of PDE10A inhibitors as potential therapeutics. The preclinical characterization of the PDE10A PET tracer [(11)C]MK-8193 is described. PROCEDURES: In vitro binding studies with [(3)H]MK-8193 were conducted in rat, monkey, and human brain tissue. PET studies with [(11)C]MK-8193 were conducted in rats and rhesus monkeys at baseline and following administration of a PDE10A inhibitor. RESULTS: [(3)H]MK-8193 is a high-affinity, selective PDE10A radioligand in rat, monkey, and human brain tissue. In vivo, [(11)C]MK-8193 displays rapid kinetics, low test-retest variability, and a large specific signal that is displaced by a structurally diverse PDE10A inhibitor, enabling the determination of pharmacokinetic/enzyme occupancy relationships. CONCLUSIONS: [(11)C]MK-8193 is a useful PET tracer for the preclinical characterization of PDE10A therapeutic candidates in rat and monkey. Further evaluation of [(11)C]MK-8193 in humans is warranted.


Subject(s)
Heterocyclic Compounds, 2-Ring/chemistry , Phosphoric Diester Hydrolases/metabolism , Positron-Emission Tomography/methods , Animals , Brain/diagnostic imaging , Carbon Radioisotopes , Female , Heterocyclic Compounds, 2-Ring/blood , Heterocyclic Compounds, 2-Ring/chemical synthesis , Heterocyclic Compounds, 2-Ring/pharmacokinetics , Humans , Macaca mulatta , Male , Phosphodiesterase Inhibitors/chemistry , Phosphodiesterase Inhibitors/pharmacology , Rats , Time Factors
15.
J Nucl Med ; 57(10): 1599-1606, 2016 Oct.
Article in English | MEDLINE | ID: mdl-27230925

ABSTRACT

A PET tracer is desired to help guide the discovery and development of disease-modifying therapeutics for neurodegenerative diseases characterized by neurofibrillary tangles (NFTs), the predominant tau pathology in Alzheimer disease (AD). We describe the preclinical characterization of the NFT PET tracer 18F-MK-6240. METHODS: In vitro binding studies were conducted with 3H-MK-6240 in tissue slices and homogenates from cognitively normal and AD human brain donors to evaluate tracer affinity and selectivity for NFTs. Immunohistochemistry for phosphorylated tau was performed on human brain slices for comparison with 3H-MK-6240 binding patterns on adjacent brain slices. PET studies were performed with 18F-MK-6240 in monkeys to evaluate tracer kinetics and distribution in the brain. 18F-MK-6240 monkey PET studies were conducted after dosing with unlabeled MK-6240 to evaluate tracer binding selectivity in vivo. RESULTS: The 3H-MK-6240 binding pattern was consistent with the distribution of phosphorylated tau in human AD brain slices. 3H-MK-6240 bound with high affinity to human AD brain cortex homogenates containing abundant NFTs but bound poorly to amyloid plaque-rich, NFT-poor AD brain homogenates. 3H-MK-6240 showed no displaceable binding in the subcortical regions of human AD brain slices and in the hippocampus/entorhinal cortex of non-AD human brain homogenates. In monkey PET studies, 18F-MK-6240 displayed rapid and homogeneous distribution in the brain. The 18F-MK-6240 volume of distribution stabilized rapidly, indicating favorable tracer kinetics. No displaceable binding was observed in self-block studies in rhesus monkeys, which do not natively express NFTs. Moderate defluorination was observed as skull uptake. CONCLUSION: 18F-MK-6240 is a promising PET tracer for the in vivo quantification of NFTs in AD patients.


Subject(s)
Isoquinolines/chemistry , Neurofibrillary Tangles , Positron-Emission Tomography/methods , Animals , Autoradiography , Brain/diagnostic imaging , Brain/metabolism , Brain/pathology , Humans , Isoquinolines/metabolism , Macaca mulatta , Male , Radioactive Tracers , Radiochemistry
16.
J Med Chem ; 59(10): 4778-89, 2016 05 26.
Article in English | MEDLINE | ID: mdl-27088900

ABSTRACT

Neurofibrillary tangles (NFTs) made up of aggregated tau protein have been identified as the pathologic hallmark of several neurodegenerative diseases including Alzheimer's disease. In vivo detection of NFTs using PET imaging represents a unique opportunity to develop a pharmacodynamic tool to accelerate the discovery of new disease modifying therapeutics targeting tau pathology. Herein, we present the discovery of 6-(fluoro-(18)F)-3-(1H-pyrrolo[2,3-c]pyridin-1-yl)isoquinolin-5-amine, 6 ([(18)F]-MK-6240), as a novel PET tracer for detecting NFTs. 6 exhibits high specificity and selectivity for binding to NFTs, with suitable physicochemical properties and in vivo pharmacokinetics.


Subject(s)
Drug Discovery , Isoquinolines/chemistry , Molecular Imaging , Neurofibrillary Tangles/pathology , Positron-Emission Tomography , Fluorine Radioisotopes/chemistry , Humans , Isoquinolines/chemical synthesis , Isoquinolines/pharmacokinetics , Molecular Structure , Neurofibrillary Tangles/metabolism
17.
J Chromatogr B Analyt Technol Biomed Life Sci ; 819(2): 293-300, 2005 May 25.
Article in English | MEDLINE | ID: mdl-15833293

ABSTRACT

I, 2-{[5,7-dipropyl-3-(trifluoromethyl)-1,2-benzisoxazol-6-yl]oxy}-2-methyl propionic acid is an alpha peroxisome proliferator-activated receptor (PPAR) agonist with some gamma activity being investigated for potential use in the treatment of Type II diabetes mellitus and dyslipidemia. Two automated liquid-liquid extraction methods were developed and validated for the determination of I in human plasma. Concentrations of I were determined over a wide range of clinical doses. For Method A, plasma was acidified and extracted with ethyl acetate using a fully automated procedure. Analysis was performed by LC-MS/MS with a turbo ionspray source in negative ion mode. For Method B, a larger volume of plasma was extracted and a heated nebulizer source was used on the mass spectrometer. Method A was linear from 0.05 to 50 ng/mL and Method B from 0.2 to 1000 ng/mL. Validation procedures showed that both methods were robust, specific and reproducible.


Subject(s)
Insulin Resistance , Isoxazoles/pharmacology , Propionates/pharmacology , Spectrometry, Mass, Electrospray Ionization/methods , Automation , Diabetes Mellitus, Type 2/drug therapy , Humans , Nebulizers and Vaporizers , Reference Standards , Reproducibility of Results , Sensitivity and Specificity
18.
J Pharm Biomed Anal ; 33(1): 73-84, 2003 Sep 15.
Article in English | MEDLINE | ID: mdl-12946533

ABSTRACT

Losartan is an orally active angiotensin II receptor antagonist indicated for the treatment of hypertension. EXP3174 is an active metabolite, which contributes to the overall activity of losartan. Analytical methods for the simultaneous determination of losartan and its active metabolite EXP3174 in human plasma and urine with limited plasma sample size have been developed and validated to support a pediatric clinical program. In both methods, analytes are extracted from the matrixes by liquid-liquid extraction and separated using reverse phase high-performance liquid chromatography (HPLC). A tandem mass spectrometer (MS/MS) with a Turbo ionspray (TIS) interface in multiple-reaction-monitoring (MRM) mode is used for detection of the analytes in both methods. The plasma method has a lower limit of quantitation (LOQ) of 1 ng/ml with a linearity range of 1-500 ng/ml for losartan and EXP3174 using 100 microl of plasma. For the urine method, the LOQ for both losartan and EXP3174 is 2 ng/ml using 0.5 ml of urine, and the linearity range for both analytes is 2-1000 ng/ml. Validation procedures have proven that both methods are robust, accurate, and reproducible. Both methods have been used to assay clinical samples and provided satisfactory results.


Subject(s)
Antihypertensive Agents/analysis , Imidazoles/analysis , Losartan/analysis , Tetrazoles/analysis , Antihypertensive Agents/blood , Antihypertensive Agents/urine , Child, Preschool , Chromatography, High Pressure Liquid , Humans , Imidazoles/blood , Imidazoles/urine , Indicators and Reagents , Losartan/blood , Losartan/urine , Mass Spectrometry , Quality Control , Reference Standards , Reproducibility of Results , Tetrazoles/blood , Tetrazoles/urine
19.
J Pharm Biomed Anal ; 27(5): 699-709, 2002 Feb 01.
Article in English | MEDLINE | ID: mdl-11814711

ABSTRACT

A sensitive, specific, and robust liquid chromatography (LC)/mass spectrometry (MS)/MS method has been developed and validated for a novel M(3) muscarinic receptor antagonist (I) and its active 5-OH metabolite (II) in human plasma. The assay involves a two-step liquid-liquid extraction of the compounds from human plasma, high performance liquid chromatography (HPLC) separation, and MS/MS for the detection of the analytes. The method provides a linear response from a quantitation limit of 0.05-20 ng/ml for I and 0.1-20 ng/ml for II using 1 ml of plasma. The mean absolute recovery was 85.4% for I and 80.8% for II, respectively. The intra-assay accuracy of I and II averaged from 95.0 to 105.3% with coefficient of variation (CV) values

Subject(s)
Muscarinic Antagonists/analysis , Muscarinic Antagonists/metabolism , Receptors, Muscarinic , Chromatography, Liquid/methods , Humans , Mass Spectrometry/methods , Muscarinic Antagonists/blood , Muscarinic Antagonists/chemistry , Receptor, Muscarinic M3 , Receptors, Muscarinic/blood
20.
J Pharm Biomed Anal ; 35(3): 523-34, 2004 May 28.
Article in English | MEDLINE | ID: mdl-15137977

ABSTRACT

I, 5-[3-[3-(4-phenoxy-2-propylphenoxy)-propoxy]-phenyl]-2,4-thiazolidinedione sodium salt, is a dual alpha/gamma peroxisome proliferator-activated receptor (PPAR) agonist for potential use in diabetic patients. The compound has a para-hydroxylated metabolite, II, which has also been shown to exhibit PPAR activity. An LC-MS/MS method for the simultaneous determination of I and its active metabolite (II) in human plasma has been successfully developed. The method consists of treating 0.5 ml plasma with ammonium acetate (pH 9.6; 50mM) and extracting I, II and internal standard (III, Fig. 2) with 5 ml ethyl acetate. The ethyl acetate is evaporated and the samples are reconstituted in 0.1 ml acetonitrile:0.1% formic acid (65:35, v/v). The entire extraction procedure, as well as sample collection, was performed in glass tubes and vials to overcome the analytes adherence to polypropylene. A linear HPLC gradient was used to separate the analyte, metabolite, internal standard, and other interfering, non-quantitated metabolites. Detection was by negative ionization MS/MS on a turbo ionspray probe. Precursor-->product ion combinations were monitored in multiple reaction monitoring (MRM) mode. The linear range is 0.05-20 ng/ml for I and 0.1-20 ng/ml for II. Recoveries were 59.4, 90.1 and 56.8% for I, II and III, respectively. Intraday variation using this method was <==7.0% for I and <==9.2% for II. The method exhibits good linearity and reproducibility for each analyte and good sensitivity, selectivity and robustness when used for the analysis of clinical samples.


Subject(s)
Insulin , Technology, Pharmaceutical/methods , Thiazolidinediones/blood , Gas Chromatography-Mass Spectrometry/methods , Humans , Hydroxylation , Insulin/metabolism , Thiazolidinediones/metabolism
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