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1.
ACS Med Chem Lett ; 10(11): 1573-1578, 2019 Nov 14.
Article in English | MEDLINE | ID: mdl-32038769

ABSTRACT

A series of bicyclic pyridones were identified as potent inhibitors of catechol O-methyltransferase (COMT). Substituted benzyl groups attached to the basic nitrogen of the core scaffold gave the most potent inhibitors within this series. Rat pharmacokinetic studies showed medium to high levels of clearance for this series, but with high free fraction due to remarkably low levels of protein and tissue binding. In rat biomarker studies, levels of unbound drug exposure are seen in the brain, which exceed their respective IC50s, leading to changes in the levels of dopamine metabolites in a manner consistent with COMT inhibition.

2.
J Med Chem ; 61(21): 9647-9665, 2018 11 08.
Article in English | MEDLINE | ID: mdl-30272964

ABSTRACT

A series of 8-hydroxy quinolines were identified as potent inhibitors of catechol O-methyltransferase (COMT) with selectivity for the membrane-bound form of the enzyme. Small substituents at the 7-position of the quinoline were found to increase metabolic stability without sacrificing potency. Compounds with good pharmacokinetics and brain penetration were identified and demonstrated in vivo modulation of dopamine metabolites in the brain. An X-ray cocrystal structure of compound 21 in the S-COMT active site shows chelation of the active site magnesium similar to catechol-based inhibitors. These compounds should prove useful for treatment of many neurological and psychiatric conditions associated with compromised cortical dopamine signaling.


Subject(s)
Catechol O-Methyltransferase Inhibitors/chemistry , Catechol O-Methyltransferase Inhibitors/pharmacology , Catechol O-Methyltransferase/metabolism , Drug Design , Oxyquinoline/chemistry , Oxyquinoline/pharmacology , Animals , Brain/metabolism , Catechol O-Methyltransferase/chemistry , Catechol O-Methyltransferase Inhibitors/metabolism , Catechol O-Methyltransferase Inhibitors/pharmacokinetics , Male , Mice , Models, Molecular , Oxyquinoline/metabolism , Oxyquinoline/pharmacokinetics , Protein Conformation , Rats , Tissue Distribution
3.
ChemMedChem ; 9(4): 693-8, 2014 Apr.
Article in English | MEDLINE | ID: mdl-24446373

ABSTRACT

The role of the synaptic vesicle protein 2A (SV2A) protein, target of the antiepileptic drug levetiracetam, is still mostly unknown. Considering its potential to provide in vivo functional insights into the role of SV2A in epileptic patients, the development of an SV2A positron emission tomography (PET) tracer has been undertaken. Using a 3D pharmacophore model based on close analogues of levetiracetam, we report the rationale design of three heterocyclic non-acetamide lead compounds, UCB-A, UCB-H and UCB-J, the first single-digit nanomolar SV2A ligands with suitable properties for development as PET tracers.


Subject(s)
Acetamides , Drug Discovery , Heterocyclic Compounds , Membrane Glycoproteins/analysis , Nerve Tissue Proteins/analysis , Positron-Emission Tomography , Acetamides/chemical synthesis , Acetamides/chemistry , Animals , Heterocyclic Compounds/chemical synthesis , Heterocyclic Compounds/chemistry , Humans , Ligands , Male , Membrane Glycoproteins/metabolism , Models, Molecular , Molecular Structure , Nerve Tissue Proteins/metabolism , Radioactive Tracers , Rats , Rats, Wistar
4.
J Med Chem ; 47(3): 530-49, 2004 Jan 29.
Article in English | MEDLINE | ID: mdl-14736235

ABSTRACT

(S)-alpha-ethyl-2-oxopyrrolidine acetamide 2 (levetiracetam, Keppra, UCB S.A.), a structural analogue of piracetam, has recently been approved as an add-on treatment of refractory partial onset seizures in adults. This drug appears to combine significant efficacy and high tolerability due to a unique mechanism of action. The latter relates to a brain-specific binding site for 2 (LBS for levetiracetam binding site) that probably plays a major role in its antiepileptic properties. Using this novel molecular target, we initiated a drug-discovery program searching for ligands with significant affinity to LBS with the aim to characterize their therapeutic potential in epilepsy and other central nervous system diseases. We systematically investigated the various positions of the pyrrolidone acetamide scaffold. We found that (i) the carboxamide moiety on 2 is essential for affinity; (ii) among 100 different side chains, the preferred substitution alpha to the carboxamide is an ethyl group with the (S)-configuration; (iii) the 2-oxopyrrolidine ring is preferred over piperidine analogues or acyclic compounds; (iv) substitution of positions 3 or 5 of the lactam ring decreases the LBS affinity; and (v) 4-substitution of the lactam ring by small hydrophobic groups improves the in vitro and in vivo potency. Six interesting candidates substituted in the 4-position have been shown to be more potent antiseizure agents in vivo than 2. Further pharmacological studies from our group led to the selection of (2S)-2-[(4R)-2-oxo-4-propylpyrrolidin-1-yl]butanamide 83alpha (ucb 34714) as the most interesting candidate. It is approximately 10 times more potent than 2 as an antiseizure agent in audiogenic seizure-prone mice. A clinical phase I program has been successfully concluded and 83alpha will commence several phase II trials during 2003.


Subject(s)
Amides/chemical synthesis , Anticonvulsants/chemical synthesis , Butyrates/chemical synthesis , Piracetam/analogs & derivatives , Pyrrolidinones/chemical synthesis , Acoustic Stimulation , Amides/pharmacokinetics , Amides/pharmacology , Animals , Anticonvulsants/pharmacokinetics , Anticonvulsants/pharmacology , Binding Sites , Butyrates/pharmacokinetics , Butyrates/pharmacology , Caco-2 Cells , Cerebral Cortex/metabolism , Crystallography, X-Ray , Female , Humans , In Vitro Techniques , Levetiracetam , Male , Mice , Mice, Inbred DBA , Microsomes, Liver/metabolism , Models, Molecular , Molecular Conformation , Piracetam/metabolism , Pyrrolidinones/pharmacokinetics , Pyrrolidinones/pharmacology , Rats , Rats, Sprague-Dawley , Seizures/drug therapy , Seizures/etiology , Structure-Activity Relationship
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