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1.
J Pharmacol Exp Ther ; 343(1): 233-45, 2012 Oct.
Article in English | MEDLINE | ID: mdl-22815533

ABSTRACT

Blockade of the histamine H(3) receptor (H(3)R) enhances central neurotransmitter release, making it an attractive target for the treatment of cognitive disorders. Here, we present in vitro and in vivo pharmacological profiles for the H(3)R antagonist 2-[4'-((3aR,6aR)-5-methyl-hexahydro-pyrrolo[3,4-b]pyrrol-1-yl)-biphenyl-4-yl]-2H-pyridazin-3-one (ABT-288). ABT-288 is a competitive antagonist with high affinity and selectivity for human and rat H(3)Rs (K(i) = 1.9 and 8.2 nM, respectively) that enhances the release of acetylcholine and dopamine in rat prefrontal cortex. In rat behavioral tests, ABT-288 improved acquisition of a five-trial inhibitory avoidance test in rat pups (0.001-0.03 mg/kg), social recognition memory in adult rats (0.03-0.1 mg/kg), and spatial learning and reference memory in a rat water maze test (0.1-1.0 mg/kg). ABT-288 attenuated methamphetamine-induced hyperactivity in mice. In vivo rat brain H(3)R occupancy of ABT-288 was assessed in relation to rodent doses and exposure levels in behavioral tests. ABT-288 demonstrated a number of other favorable attributes, including good pharmacokinetics and oral bioavailability of 37 to 66%, with a wide central nervous system and cardiovascular safety margin. Thus, ABT-288 is a selective H(3)R antagonist with broad procognitive efficacy in rodents and excellent drug-like properties that support its advancement to the clinical area.


Subject(s)
Cognition/drug effects , Cognition/physiology , Histamine H3 Antagonists/pharmacology , Nootropic Agents/pharmacology , Pyridazines/pharmacology , Pyrroles/pharmacology , Receptors, Histamine H3/physiology , Animals , Avoidance Learning/drug effects , Avoidance Learning/physiology , Guinea Pigs , HEK293 Cells , Histamine H3 Antagonists/chemistry , Humans , Male , Mice , Nootropic Agents/chemistry , Protein Binding/physiology , Pyridazines/chemistry , Pyrroles/chemistry , Rats , Rats, Inbred SHR , Rats, Long-Evans , Rats, Sprague-Dawley , Recognition, Psychology/drug effects , Recognition, Psychology/physiology
2.
Neuropharmacology ; 60(2-3): 460-6, 2011.
Article in English | MEDLINE | ID: mdl-21044639

ABSTRACT

Histamine H(3) receptor antagonists enhance cognition in preclinical models and have been proposed as novel therapeutics for cognitive disorders, in particular Alzheimer's disease (AD). Increased neurotransmitter (e.g. acetylcholine and histamine) release associated with this pharmacology may lead to activation of postsynaptic signaling pathways relevant to cognition and neuroprotection, such as increased phosphorylation of CREB, a transcription factor germane to cognitive function, and the inhibitory residue (Ser-9) of GSK3ß, a primary tau kinase associated with AD pathology. In the present studies, acute administration of the H(3)-antagonist ABT-239 (0.01-1.0mg/kg i.p.) increased cortical CREB and S(9)-GSK3ß phosphorylation in CD1 mice. Donepezil, while increasing CREB phosphorylation, did not increase pS(9)-GSK3ß expression in contrast to ABT-239. Continuous (2-wk) s.c. infusion of ABT-239 (0.7 mg/kg/day) normalized reduced cortical CREB and hippocampal S(9)-GSK3ß phosphorylation observed in Tg2576 (APP) AD-transgenic mice. In addition, ABT-239 infusion reversed tau hyperphosphorylation in the spinal cord and hippocampus of TAPP (tau × APP) AD-transgenic mice. Interestingly, ABT-239 produced signaling changes (pS(9)-GSK3ß) in α7 nicotinic acetylcholine receptor (nAChR) knockout mice. In contrast to wild type, these mice do not exhibit α7 nAChR agonist induced phosphorylation, thus suggesting that H(3)-antagonist-mediated signaling is not dependent on ACh-stimulated α7 nAChR activation. In summary, results of these studies suggest that ABT-239 leads to biochemical signaling that promotes cognitive performance as well as attenuation of tau hyperphosphorylation, raising the intriguing possibility that H(3) antagonists have potential for both symptomatic and disease modifying benefit in the treatment of AD.


Subject(s)
Alzheimer Disease/metabolism , Benzofurans/metabolism , Cell Membrane/metabolism , Histamine H3 Antagonists/metabolism , Pyrrolidines/metabolism , Receptors, Histamine H3/metabolism , Signal Transduction/physiology , Alzheimer Disease/drug therapy , Animals , Benzofurans/pharmacology , Benzofurans/therapeutic use , CREB-Binding Protein/metabolism , Cell Membrane/drug effects , Female , Glycogen Synthase Kinase 3/metabolism , Glycogen Synthase Kinase 3 beta , Histamine H3 Antagonists/pharmacology , Histamine H3 Antagonists/therapeutic use , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , Mice, Transgenic , Pyrrolidines/pharmacology , Pyrrolidines/therapeutic use , Signal Transduction/drug effects , Treatment Outcome
3.
J Pharmacol Exp Ther ; 334(3): 875-86, 2010 Sep 01.
Article in English | MEDLINE | ID: mdl-20504913

ABSTRACT

We previously reported that alpha7 nicotinic acetylcholine receptor (nAChR) agonism produces efficacy in preclinical cognition models correlating with activation of cognitive and neuroprotective signaling pathways associated with Alzheimer's disease (AD) pathology. In the present studies, the selective and potent alpha7 nAChR agonist 5-(6-[(3R)-1-azabicyclo[2.2.2]oct-3-yloxy] pyridazin-3-yl)-1H-indole (ABT-107) was evaluated in behavioral assays representing distinct cognitive domains. Studies were also conducted to address potential issues that may be associated with the clinical development of an alpha7 nAChR agonist. Specifically, ABT-107 improved cognition in monkey delayed matching to sample, rat social recognition, and mouse two-trial inhibitory avoidance, and continued to improve cognitive performance at injection times when exposure levels continued to decline. Rats concurrently infused with ABT-107 and donepezil at steady-state levels consistent with clinical exposure showed improved short-term recognition memory. Compared with nicotine, ABT-107 did not produce behavioral sensitization in rats or exhibit psychomotor stimulant activity in mice. Repeated (3 days) daily dosing of ABT-107 increased extracellular cortical acetylcholine in rats, whereas acute administration increased cortical extracellular signal-regulated kinase and cAMP response element-binding protein phosphorylation in mice, neurochemical and biochemical events germane to cognitive function. ABT-107 increased cortical phosphorylation of the inhibitory residue (Ser9) of glycogen synthase kinase-3, a primary tau kinase associated with AD pathology. In addition, continuous infusion of ABT-107 in tau/amyloid precursor protein transgenic AD mice reduced spinal tau hyperphosphorylation. These findings show that targeting alpha7 nAChRs may have potential utility for symptomatic alleviation and slowing of disease progression in the treatment AD, and expand the understanding of the potential therapeutic viability associated with the alpha7 nAChR approach in the treatment of AD.


Subject(s)
Alzheimer Disease/drug therapy , Nicotinic Agonists/pharmacology , Receptors, Nicotinic/drug effects , Acetylcholine/metabolism , Alzheimer Disease/chemically induced , Alzheimer Disease/psychology , Amyloid beta-Protein Precursor/genetics , Amyloid beta-Protein Precursor/toxicity , Animals , Avoidance Learning/drug effects , Behavior, Animal/drug effects , Cognition/drug effects , Cyclic AMP Response Element-Binding Protein/metabolism , Donepezil , Electroencephalography/drug effects , Extracellular Signal-Regulated MAP Kinases/metabolism , Glycogen Synthase Kinase 3/antagonists & inhibitors , Indans/pharmacology , Indoles/pharmacokinetics , Indoles/pharmacology , Macaca mulatta , Male , Mice , Mice, Knockout , Nicotinic Agonists/pharmacokinetics , Nootropic Agents/pharmacology , Phosphorylation , Piperidines/pharmacology , Psychomotor Performance/drug effects , Quinuclidines/pharmacokinetics , Quinuclidines/pharmacology , Rats , Rats, Sprague-Dawley , Recognition, Psychology/drug effects , Social Perception , alpha7 Nicotinic Acetylcholine Receptor , tau Proteins/genetics , tau Proteins/toxicity
4.
CNS Neurosci Ther ; 14(1): 65-82, 2008.
Article in English | MEDLINE | ID: mdl-18482100

ABSTRACT

Among the diverse sets of nicotinic acetylcholine receptors (nAChRs), the alpha7 subtype is highly expressed in the hippocampus and cortex and is thought to play important roles in a variety of cognitive processes. In this review, we describe the properties of a novel biaryl diamine alpha7 nAChR agonist, A-582941. A-582941 was found to exhibit high-affinity binding and partial agonism at alpha7 nAChRs, with acceptable pharmacokinetic properties and excellent distribution to the central nervous system (CNS). In vitro and in vivo studies indicated that A-582941 activates signaling pathways known to be involved in cognitive function such as ERK1/2 and CREB phosphorylation. A-582941 enhanced cognitive performance in behavioral models that capture domains of working memory, short-term recognition memory, memory consolidation, and sensory gating deficit. A-582941 exhibited a benign secondary pharmacodynamic and tolerability profile as assessed in a battery of assays of cardiovascular, gastrointestinal, and CNS function. The studies summarized in this review collectively provide preclinical validation that alpha7 nAChR agonism offers a mechanism with potential to improve cognitive deficits associated with various neurodegenerative and psychiatric disorders.


Subject(s)
Cognition/drug effects , Nicotinic Agonists/pharmacology , Pyridazines/pharmacology , Pyrroles/pharmacology , Receptors, Nicotinic/physiology , Animals , Humans , alpha7 Nicotinic Acetylcholine Receptor
5.
Neurosci Res ; 60(3): 266-74, 2008 Mar.
Article in English | MEDLINE | ID: mdl-18164502

ABSTRACT

The nicotinic acetylcholine receptors (nAChRs) play critical roles in neuronal transmission and modulation. Among the diverse nAChRs, the alpha7 subtype has been considered as a potential therapeutic target for treating cognitive deficits associated with neuropsychiatric and neurodegenerative diseases. Although a number of mechanisms including neurotransmitter and biochemical effects linking alpha7 nAChR activation and cognitive function are beginning to be described, the underlying molecular processes especially following repeated administration remain unclear. To address this, we have performed gene expression analysis in rats treated with nicotine and a selective alpha7 nAChR agonist, PNU-282987. Our results showed significant overlap in gene expression changes induced by PNU-282987 and nicotine, suggesting convergent pathways triggered by these compounds. Treatment with nicotine also resulted in regulation of a number of genes that were not regulated by PNU-282987, consistent with the interaction of nicotine with other nAChRs beyond the alpha7 subtype. Interestingly, these gene expression changes were observed 24 h post-dose, suggesting that both nicotine and PNU-282987 cause protracted changes in gene expression. Overall, our results identify gene expression changes that may contribute to further defining the roles of nAChR activation in cognitive function.


Subject(s)
Gene Expression Profiling , Hippocampus/drug effects , Hippocampus/physiology , Nicotine/pharmacology , Nicotinic Agonists/pharmacology , Receptors, Nicotinic/physiology , Animals , Benzamides/pharmacology , Bridged Bicyclo Compounds/pharmacology , Rats , Rats, Sprague-Dawley , Transcription, Genetic/drug effects , Transcription, Genetic/physiology , alpha7 Nicotinic Acetylcholine Receptor
6.
Pharmacol Biochem Behav ; 81(4): 797-804, 2005 Aug.
Article in English | MEDLINE | ID: mdl-16005055

ABSTRACT

A series of in vivo studies in a conscious rat model was conducted to investigate the role of oxytocinergic and dopaminergic neurotransmission in the central regulation of penile erection. Oxytocin, when administrated either intracerebroventricularly (i.c.v.) or intrathecally (i.t.) at the spinal levels of L4-L6, produced dose-related erectogenic effects with a maximum at 0.1 microg/rat i.c.v. or 0.03 microg/rat i.t. Oxytocin-evoked penile activity was attenuated by the inhibitory effect of the selective oxytocin antagonist vasotocin analog [Pmp-Tyr(Me)-Ile-Thr-Asn-Cys]-Pro-Orn-Tyr-NH2 (0.1-1 microg, i.c.v. or i.t.). Penile erection induced by oxytocin was blocked by the dopaminergic receptor antagonist clozapine (1-10 micromol/kg i.p.) in a dose-dependent manner. Conversely, oxytocin antagonist microinjected locally (i.c.v. or i.t.) significantly attenuated the pro-erectile effects of systemic (s.c.) apomorphine, a centrally acting erectogenic agent through dopaminergic receptors. Together, these data indicate a possible concomitant role between dopamine and oxytocin in mediating penile erection at both the spinal and supraspinal sites.


Subject(s)
Dopamine Antagonists/pharmacology , Oxytocin/pharmacology , Penile Erection/drug effects , Animals , Apomorphine/pharmacology , Clozapine/administration & dosage , Clozapine/pharmacology , Dopamine Agonists/pharmacology , Dose-Response Relationship, Drug , Drug Interactions , Injections, Intraventricular , Injections, Spinal , Injections, Subcutaneous , Male , Models, Biological , Oxytocin/administration & dosage , Rats , Rats, Wistar , Vasotocin/administration & dosage , Vasotocin/analogs & derivatives , Vasotocin/pharmacology
7.
J Pharmacol Exp Ther ; 313(1): 176-90, 2005 Apr.
Article in English | MEDLINE | ID: mdl-15608077

ABSTRACT

Acute pharmacological blockade of central histamine H3 receptors (H3Rs) enhances arousal/attention in rodents. However, there is little information available for other behavioral domains or for repeated administration using selective compounds. ABT-239 [4-(2-{2-[(2R)-2-methylpyrrolidinyl]ethyl}-benzofuran-5-yl)benzonitrile] exemplifies such a selective, nonimidazole H3R antagonist with high affinity for rat (pK(i) = 8.9) and human (pK(i) = 9.5) H3Rs. Acute functional blockade of central H3Rs was demonstrated by blocking the dipsogenia response to the selective H3R agonist (R)-alpha-methylhistamine in mice. In cognition studies, acquisition of a five-trial, inhibitory avoidance test in rat pups was improved with ABT-239 (0.1-1.0 mg/kg), a 10- to 150-fold gain in potency, with similar efficacy, over previous antagonists such as thioperamide, ciproxifan, A-304121 [(4-(3-(4-((2R)-2-aminopropanoyl)-1-piperazinyl)propoxy)phenyl)(cyclopropyl) methanone], A-317920 [N-((1R)-2-(4-(3-(4-(cyclopropylcarbonyl) phenoxy)propyl)-1-piperazinyl)-1-methyl-2-oxoethyl)-2-furamide], and A-349821 [(4'-(3-((R,R)2,5-dimethyl-pyrrolidin-1-yl)-propoxy)-biphenyl-4-yl)-morpholin-4-yl-methanone]. Efficacy in this model was maintained for 3 to 6 h and following repeated dosing with ABT-239. Social memory was also improved in adult (0.01-0.3 mg/kg) and aged (0.3-1.0 mg/kg) rats. In schizophrenia models, ABT-239 improved gating deficits in DBA/2 mice using prepulse inhibition of startle (1.0-3.0 mg/kg) and N40 (1.0-10.0 mg/kg). Furthermore, ABT-239 (1.0 mg/kg) attenuated methamphetamine-induced hyperactivity in mice. In freely moving rat microdialysis studies, ABT-239 enhanced acetylcholine release (0.1-3.0 mg/kg) in adult rat frontal cortex and hippocampus and enhanced dopamine release in frontal cortex (3.0 mg/kg), but not striatum. In summary, broad efficacy was observed with ABT-239 across animal models such that potential clinical efficacy may extend beyond disorders such as ADHD to include Alzheimer's disease and schizophrenia.


Subject(s)
Benzofurans/pharmacology , Benzofurans/therapeutic use , Cognition Disorders/drug therapy , Histamine Antagonists/pharmacology , Histamine Antagonists/therapeutic use , Pyrrolidines/pharmacology , Pyrrolidines/therapeutic use , Receptors, Histamine H3/drug effects , Schizophrenia/drug therapy , Aging/psychology , Animals , Avoidance Learning/drug effects , Benzofurans/administration & dosage , Central Nervous System Stimulants , Cognition Disorders/psychology , Dose-Response Relationship, Drug , Drinking/drug effects , Electroencephalography/drug effects , Histamine Antagonists/administration & dosage , Hyperkinesis/chemically induced , Hyperkinesis/prevention & control , Male , Maze Learning/drug effects , Methamphetamine , Mice , Mice, Inbred DBA , Microdialysis , Neurons/drug effects , Neurons/metabolism , Neurotransmitter Agents/metabolism , Pyrrolidines/administration & dosage , Rats , Rats, Inbred SHR , Reflex, Startle/drug effects , Social Behavior
8.
Curr Top Med Chem ; 4(3): 369-84, 2004.
Article in English | MEDLINE | ID: mdl-14754452

ABSTRACT

Current analgesics, such as opioids and nonsteroidal anti-inflammatory drugs (NSAIDs), are largely refinements of approaches available for more than 100 years and have critical liabilities and limitations. A number of new molecular targets for analgesia have been proposed in recent years, including the neuronal nicotinic acetylcholine receptor (nAChR). Agonists at neuronal nAChRs have antinociceptive effects in a variety of preclinical pain models. Moreover, nicotine can decrease experimentally-induced pain in humans without disrupting normal tactile sensation. These data from both experimental animals and humans suggest that compounds targeting neuronal nAChRs may represent a new class of analgesic agents. In this paper, we provide brief overviews of the physiology of pain, the animal models used to assess potential analgesics preclinically, and the biology of nAChRs. We then provide a review of preclinical data on the antinociceptive effects of a variety of neuronal nAChR agonists and a discussion of potential mechanisms, including evidence that antinociception is mediated by activation of brainstem nuclei with descending inhibitory inputs to the spinal cord. An evaluation of the clinical potential of this approach must also consider potential side effects. Undesirable side effects of nicotine are well known, but as we will discuss in detail, these effects are not produced by all neuronal nAChR agonists and the existence of neuronal nAChR subtypes may provide a basis for separating therapeutic effects from toxicities.


Subject(s)
Analgesics/pharmacology , Nicotinic Agonists/pharmacology , Receptors, Nicotinic/drug effects , Analgesics/chemistry , Analgesics/therapeutic use , Animals , Models, Animal , Nicotinic Agonists/chemistry , Nicotinic Agonists/therapeutic use , Pain/drug therapy , Receptors, Nicotinic/classification
10.
J Pharmacol Exp Ther ; 305(3): 897-908, 2003 Jun.
Article in English | MEDLINE | ID: mdl-12606600

ABSTRACT

Pharmacological blockade of central histamine H3 receptors (H3Rs) enhances cognition in rodents and offers promise for the clinical treatment of neurological disorders. However, many previously characterized H3R antagonists are either not selective for H3Rs or have potentially significant tolerability issues. Here, we present in vivo behavioral and neurophysiological data for two novel and selective H3R antagonists with improved safety indices. Functional blockade of central H3Rs was first demonstrated for A-304121 [(4-(3-(4-((2R)-2-aminopropanoyl)-1-piperazinyl)propoxy)phenyl)cyclopropylmethanone] (1 mg/kg) and A-317920 [N-((1R)-2-(4-(3-(4-(cyclopropylcarbonyl)phenoxy)propyl)-1-piperazinyl)-1-methyl-2-oxo-ethyl)-2-furamide] (0.45 mg/kg) by significantly attenuating an acute dipsogenia response to the selective H3R agonist (R)-alpha-methylhistamine [(R)-alpha-MeHA]. Cognitive performance was improved in a five-trial rat pup avoidance test following administration of A-304121 (10 mg/kg) or A-317920 (3 mg/kg), with efficacy comparable with previously published observations for reference H3R antagonists thioperamide (10 mg/kg), ciproxifan (3 mg/kg), and GT-2331 [(1R,2R)-4-(2-(5,5-dimethylhex-1-ynyl)cyclopropyl)imidazole] (1 mg/kg). Social memory was also significantly enhanced in the adult rat with A-304121 (3, 10 mg/kg) and A-317920 (1, 3 mg/kg) at doses that produced no significant change in electroencephalogram slow-wave amplitude activity. Relative therapeutic indices (TIs) of 30 and 42 were estimated for A-304121 and A-317920, respectively, by comparing doses producing adverse effects in general observation studies with potency in inhibitory avoidance, which were superior to TIs of 8, 10, and 18 observed for the reference antagonists thioperamide, ciproxifan, and GT-2331, respectively. A-304121 and A-317920 represent a series of novel, H3R-selective piperazine amides that enhance cognition in vivo, which could offer advantages over existing H3R antagonists or cognition-enhancing agents.


Subject(s)
Avoidance Learning/drug effects , Histamine Antagonists/pharmacology , Motor Activity/drug effects , Piperazines/pharmacology , Analysis of Variance , Animals , Electroencephalography/drug effects , Memory/drug effects , Mice , Rats , Rats, Inbred SHR , Receptors, Histamine H3/metabolism
11.
Pharmacol Biochem Behav ; 72(3): 741-50, 2002 Jun.
Article in English | MEDLINE | ID: mdl-12175472

ABSTRACT

The selective H(3) receptor agonist (R)-alpha-methylhistamine [(R)-alpha-MeHA] stimulates drinking in the adult rat. In the present study, we investigated the role of the H(3) receptor in mediating this behavior in a new dipsogenia model using the CD-1 mouse. In addition, the putative inverse agonists ciproxifan, thioperamide and clobenpropit; the reported antagonist (1R,2R)-4-[2-(5,5-dimethylhex-1-ynyl)cyclopropyl]imidazole (GT-2331); and the putative neutral antagonist/weak partial agonist proxyfan were evaluated for possible differences in pharmacological activity in this new model. Water intake increased over baseline in a dose-related manner following intraperitoneal administration of 80, 160 or 240 micromol/kg (R)-alpha-MeHA, but this effect was dependent on age (P30

Subject(s)
Disease Models, Animal , Drinking/drug effects , Histamine Agonists/pharmacology , Histamine Antagonists/pharmacology , Receptors, Histamine H3/physiology , Animals , Dose-Response Relationship, Drug , Drinking/physiology , Ligands , Male , Mice , Rats , Rats, Sprague-Dawley , Thirst/drug effects , Thirst/physiology
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