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1.
Pharmacol Res Perspect ; 9(5): e00855, 2021 10.
Article En | MEDLINE | ID: mdl-34423920

Several therapeutic options are currently available to treat excessive daytime sleepiness (EDS) in patients suffering from narcolepsy or obstructive sleep apnea. However, there are no comparisons between the various wake-promoting agents in terms of mechanism of action, efficacy, or safety. The goal of this study was to compare amphetamine, modafinil, solriamfetol, and pitolisant at their known primary pharmacological targets, histamine H3 receptors (H3R), dopamine, norepinephrine, and serotonin transporters, and in various in vivo preclinical models in relation to neurochemistry, locomotion, behavioral sensitization, and food intake. Results confirmed that the primary pharmacological effect of amphetamine, modafinil, and solriamfetol was to increase central dopamine neurotransmission, in part by inhibiting its transporter. Furthermore, solriamfetol increased levels of extracellular dopamine in the nucleus accumbens, and decreased the 3,4-dihydroxyphenyl acetic acid (DOPAC)/DA ratio in the striatum, as reported for modafinil and amphetamine. All these compounds produced hyperlocomotion, behavioral sensitization, and hypophagia, which are common features of psychostimulants and of compounds with abuse potential. In contrast, pitolisant, a selective and potent H3R antagonist/inverse agonist that promotes wakefulness, had no effect on striatal dopamine, locomotion, or food intake. In addition, pitolisant, devoid of behavioral sensitization by itself, attenuated the hyperlocomotion induced by either modafinil or solriamfetol. Therefore, pitolisant presents biochemical, neurochemical, and behavioral profiles different from those of amphetamine and other psychostimulants such as modafinil or solriamfetol. In conclusion, pitolisant is a differentiated therapeutic option, when compared with psychostimulants, for the treatment of EDS, as this agent does not show any amphetamine-like properties within in vivo preclinical models.


Amphetamine/pharmacology , Carbamates/pharmacology , Corpus Striatum/drug effects , Disorders of Excessive Somnolence/drug therapy , Feeding Behavior/drug effects , Locomotion/drug effects , Modafinil/pharmacology , Phenylalanine/analogs & derivatives , Piperidines/pharmacology , Wakefulness-Promoting Agents/pharmacology , 3,4-Dihydroxyphenylacetic Acid/metabolism , Adrenergic Uptake Inhibitors/pharmacology , Animals , Corpus Striatum/metabolism , Disorders of Excessive Somnolence/etiology , Dopamine/metabolism , Dopamine Plasma Membrane Transport Proteins/drug effects , Dopamine Plasma Membrane Transport Proteins/metabolism , Dopamine Uptake Inhibitors/pharmacology , Drug Evaluation, Preclinical , Drug Inverse Agonism , Histamine Antagonists/pharmacology , Mice , Narcolepsy/drug therapy , Neostriatum/drug effects , Neostriatum/metabolism , Norepinephrine Plasma Membrane Transport Proteins/drug effects , Norepinephrine Plasma Membrane Transport Proteins/metabolism , Nucleus Accumbens/drug effects , Nucleus Accumbens/metabolism , Phenylalanine/pharmacology , Receptors, Histamine H3 , Sleep Apnea, Obstructive/complications
2.
Bioorg Med Chem Lett ; 20(15): 4573-7, 2010 Aug 01.
Article En | MEDLINE | ID: mdl-20584609

A new series of 2,3-diarylpyrroles have been prepared and evaluated as CB(1) antagonists. Modulation of the topological polar surface area allowed the identification of high affinity peripherally-restricted CB(1) antagonists. Compound 11, obtained after further optimization of the metabolic profile displayed very low brain penetration, yet was able to reverse CP55940-induced gastrointestinal transit inhibition following oral administration.


Piperidines/chemistry , Pyrazoles/chemistry , Pyrroles/chemistry , Administration, Oral , Animals , Brain/metabolism , Drug Design , Gastrointestinal Transit/drug effects , Piperidines/chemical synthesis , Piperidines/pharmacology , Pyrazoles/chemical synthesis , Pyrazoles/pharmacology , Pyrroles/chemical synthesis , Pyrroles/pharmacology , Rats , Receptor, Cannabinoid, CB1/antagonists & inhibitors , Receptor, Cannabinoid, CB1/metabolism , Rimonabant
3.
Eur J Pharmacol ; 573(1-3): 206-13, 2007 Nov 14.
Article En | MEDLINE | ID: mdl-17643417

Cannabinoids have been shown to inhibit sensory nerve activation in guinea-pigs and humans. Their effects are mediated by specific activation of two types of receptors, named CB(1) and CB(2). The purpose of this study was to investigate the effects of WIN 55,212-2, (R)-(+)-[2,3-dihydro-5methyl-3-[(4-morpholino)methyl]pyrrolo-[1,2,3-de]-1,4-benzoxazin-6-yl](1-naphthyl)methanone, a non selective agonist of cannabinoid receptors, and JWH 133, (6aR,10aR)-3-(1,1-dimethylbutyl)-6a,7,10,10a-tetrahydro-6,6,9-trimethyl-6H-dibenzo[b,d]pyran a selective cannabinoid CB(2) receptor agonist, on the sensory nerve component of intraoesophageal (i.oe.) HCl-induced airway microvascular leakage and bronchoconstriction in guinea-pigs. We also tested the effect of WIN 55,212-2 on substance P-induced plasma extravasation and bronchoconstriction. Airway microvascular leakage and bronchoconstriction induced by i.oe. HCl was inhibited by the cannabinoid CB(1)/CB(2) agonist WIN 55,212-2 (0.3-3 mg/kg i.p.) in a dose-dependent manner (maximal inhibition at the dose of 3 mg kg(-1), P<0.01). The effect of WIN 55,212-2 was inhibited by a cannabinoid CB(2) receptor antagonist SR 144528, [N-[(1S)-endo-1,3,3-trimethylbicyclo[2,2,1] heptan-2yl]-5-(-4-chloro-3-methylphenyl)-1-(4-methylbenzyl)pyrazole-3-carboxamide], but not by a CB(1) receptor antagonist, SR 141716, [N-(piperidin-1yl)-5-(-4-chlorophenyl)-1-(2,4dichlorophenyl)-4-methyl-1H-pyrazole-3-carboxamide hydrochloride]. The cannabinoid CB(2) agonist JWH 133 (0.3-3 mg/kg i.p.) mimicked the inhibitory effect of WIN 55,212-2 on HCl-induced microvascular leakage. Under similar conditions, WIN 55,212-2 (1 mg kg (-1) i.p.) was unable to counteract the airway microvascular leakage and bronchoconstriction induced by substance P. These results suggest that inhibition by WIN 55,212-2 of airway plasma extravasation and bronchoconstriction induced by i.oe. HCl instillation in guinea-pigs is mediated through cannabinoid CB(2) receptor activation.


Bronchoconstriction/drug effects , Gastroesophageal Reflux/prevention & control , Pulmonary Edema/prevention & control , Receptor, Cannabinoid, CB2/agonists , Airway Obstruction/physiopathology , Airway Obstruction/prevention & control , Animals , Benzoxazines/pharmacology , Bronchi/blood supply , Bronchi/drug effects , Bronchi/physiopathology , Bronchoconstriction/physiology , Camphanes/pharmacology , Cannabinoids/pharmacology , Capillary Permeability/drug effects , Disease Models, Animal , Dose-Response Relationship, Drug , Esophagus/drug effects , Extravasation of Diagnostic and Therapeutic Materials , Gastroesophageal Reflux/physiopathology , Guinea Pigs , Hydrochloric Acid/administration & dosage , Hydrochloric Acid/toxicity , Male , Morpholines/pharmacology , Naphthalenes/pharmacology , Piperidines/pharmacology , Pulmonary Edema/physiopathology , Pyrazoles/pharmacology , Receptor, Cannabinoid, CB1/agonists , Receptor, Cannabinoid, CB2/antagonists & inhibitors , Receptor, Cannabinoid, CB2/physiology , Respiratory Function Tests/methods , Rimonabant , Trachea/blood supply , Trachea/drug effects , Trachea/physiopathology
4.
J Pharmacol Exp Ther ; 310(3): 905-14, 2004 Sep.
Article En | MEDLINE | ID: mdl-15131245

Based on binding, functional, and pharmacological data, this study introduces SR147778 [5-(4-bromophenyl)-1-(2,4-dichloro-phenyl)-4-ethyl-N-(1-piperidinyl)-1H-pyrazole-3-carboxamide] as a highly potent, selective, and orally active antagonist for the CB1 receptor. This compound displays nanomolar affinity (Ki = 0.56 and 3.5 nM) for both the rat brain and human CB1 recombinant receptors, respectively. It has low affinity (Ki = 400 nM) for both the rat spleen and human CB2 receptors. Furthermore, it shows no affinity for any of the over 100 targets investigated (IC50 > 1 microM). In vitro, SR147778 antagonizes the inhibitory effects of CP 55,940 [(1R,3R,4R)-3-[2-hydroxy-4-(1,1-dimethylheptyl)phenyl]-4-(3-hydroxypropyl)cyclohexan-1-ol] on both the mouse vas deferens contractions (pA2 value = 8.1) and on forskolin-stimulated adenylyl cyclase activity in the U373 MG cell lines (pA2 value = 8.2) but not in Chinese hamster ovary (CHO) cells permanently expressing the human peripheral cannabinoid receptor (hCB2). SR147778 is able to block the mitogen-activated protein kinase activity induced by CP 55,940 in the CHO cell line expressing human brain cannabinoid receptor (IC50 = 9.6 nM) but was inactive in cells expressing hCB2. After oral administration, SR147778 displaced the ex vivo [3H]-CP 55,940 binding to mouse brain membranes (ED50 = 3.8 mg/kg) with a long duration of action, whereas it did not interact with the CB2 receptor expressed in the mouse spleen. Using different routes of administration, SR147778 (0.3-3 mg/kg) is shown to antagonize pharmacological effects (hypothermia, analgesia, and gastrointestinal transit) induced by R-(+)-(2,3-dihydro-5-methyl-3-[[4-morpholinyl]methyl] pyrol [1,2,3-de]-1,4-benzoxazin-6-yl)(1-naphthalenyl) methanone in mice. Finally, per se, SR147778 (0.3-10 mg/kg) is able to reduce ethanol or sucrose consumption in mice and rats and food intake in fasted and nondeprived rats.


Piperidines/pharmacology , Pyrazoles/pharmacology , Receptor, Cannabinoid, CB1/antagonists & inhibitors , Animals , Binding, Competitive , CHO Cells , Cricetinae , Male , Mice , Rats , Rats, Sprague-Dawley , Rats, Wistar , Species Specificity
5.
J Pharmacol Exp Ther ; 309(2): 661-9, 2004 May.
Article En | MEDLINE | ID: mdl-14747609

The biochemical and pharmacological properties of a novel non-peptide antagonist of the bradykinin (BK) B(1) receptor, SSR240612 [(2R)-2-[((3R)-3-(1,3-benzodioxol-5-yl)-3-[[(6-methoxy-2-naphthyl)sulfonyl]amino]propanoyl)amino]-3-(4-[[2R,6S)-2,6-dimethylpiperidinyl]methyl]phenyl)-N-isopropyl-N-methylpropanamide hydrochloride] were evaluated. SSR240612 inhibited the binding of [(3)H]Lys(0)-des-Arg(9)-BK to the B(1) receptor in human fibroblast MRC5 and to recombinant human B(1) receptor expressed in human embryonic kidney cells with inhibition constants (K(i)) of 0.48 and 0.73 nM, respectively. The compound selectivity for B(1) versus B(2) receptors was in the range of 500- to 1000-fold. SSR240612 inhibited Lys(0)-desAr(9)-BK (10 nM)-induced inositol monophosphate formation in human fibroblast MRC5, with an IC(50) of 1.9 nM. It also antagonized des-Arg(9)-BK-induced contractions of isolated rabbit aorta and mesenteric plexus of rat ileum with a pA(2) of 8.9 and 9.4, respectively. Antagonistic properties of SSR240612 were also demonstrated in vivo. SSR240612 inhibited des-Arg(9)-BK-induced paw edema in mice (3 and 10 mg/kg p.o. and 0.3 and 1 mg/kg i.p.). Moreover, SSR240612 reduced capsaicin-induced ear edema in mice (0.3, 3 and 30 mg/kg p.o.) and tissue destruction and neutrophil accumulation in the rat intestine following splanchnic artery occlusion/reperfusion (0.3 mg/kg i.v.). The compound also inhibited thermal hyperalgesia induced by UV irradiation (1 and 3 mg/kg p.o.) and the late phase of nociceptive response to formalin in rats (10 and 30 mg/kg p.o.). Finally, SSR240612 (20 and 30 mg/kg p.o.) prevented neuropathic thermal pain induced by sciatic nerve constriction in the rat. In conclusion, SSR240612 is a new, potent, and orally active specific non-peptide bradykinin B(1) receptor antagonist.


Analgesics/pharmacology , Bradykinin B1 Receptor Antagonists , Dioxoles/pharmacology , Ileum/drug effects , Sulfonamides/pharmacology , Administration, Oral , Analgesics/therapeutic use , Animals , CHO Cells , Cricetinae , Disease Models, Animal , Edema/chemically induced , Edema/drug therapy , Formaldehyde , Humans , Ileum/metabolism , Male , Mice , Rabbits , Rats , Rats, Sprague-Dawley , Reperfusion Injury/drug therapy
6.
J Pharmacol Exp Ther ; 305(2): 451-9, 2003 May.
Article En | MEDLINE | ID: mdl-12606659

Human leukocyte elastase (HLE) is a proteinase capable of degrading a variety of proteins. Under normal circumstances, the proteolytic activity of HLE is effectively controlled by its natural inhibitors. However, an imbalance between elastase and its endogenous inhibitors may result in several pathophysiological states such as chronic obstructive pulmonary disease, asthma, emphysema, cystic fibrosis, and chronic inflammatory diseases. It is anticipated that an orally active HLE inhibitor could be useful for the treatment of these diseases. 2-(9-(2-Piperidinoethoxy)-4-oxo-4H-pyrido[1,2-a]pyrimidin-2-yloxymethyl)-4-(1-methylethyl)-6-methoxy-1,2-benzisothiazol-3(2H)-one-1,1-dioxide (SSR69071) is a potent inhibitor of HLE, with the inhibition constant (K(i)) and the constant for inactivation process (k(on)) being 0.0168 +/- 0.0014 nM and 0.183 +/- 0.013 10(6)/mol sr, respectively. The dissociation rate constant, k(off), was 3.11 + 0.37 10(-6)/s. SSR69071 displays a higher affinity for human elastase than for rat (K(i) = 3 nM), mouse (K(i) = 1.8 nM), and rabbit (K(i) = 58 nM) elastases. Bronchoalveolar lavage fluid from mice orally treated with SSR69071 inhibits HLE (ex vivo), and in this model, SSR69071 has a dose-dependent efficacy with an ED(50) = 10.5 mg/kg p.o. SSR69071 decreases significantly the acute lung hemorrhage induced by HLE (ED(50) = 2.8 mg/kg p.o.) in mice. Furthermore, SSR69071 prevents carrageenan- (ED(30) = 2.2 mg/kg) and HLE-induced (ED(30) = 2.7 mg/kg) paw edema in rats after p.o. administration. In conclusion, SSR69071 is a selective, orally active, and potent inhibitor of HLE with good penetration in respiratory tissues.


Cyclic S-Oxides/pharmacology , Enzyme Inhibitors/pharmacology , Leukocyte Elastase/antagonists & inhibitors , Thiazoles/pharmacology , Algorithms , Animals , Bronchoalveolar Lavage Fluid/cytology , Carrageenan , Dose-Response Relationship, Drug , Edema/chemically induced , Edema/drug therapy , Edema/pathology , Elastin/metabolism , Hemorrhage/chemically induced , Hemorrhage/pathology , Humans , Hydrolysis , Kinetics , Leukocyte Elastase/toxicity , Male , Mice , Oligopeptides/pharmacology , Rabbits , Rats
7.
Eur J Pharmacol ; 449(1-2): 55-60, 2002 Aug 02.
Article En | MEDLINE | ID: mdl-12163106

The effect of the isoquinoline derivative, drotaverine on the specific binding of [(3)H]nitrendipine and [(3)H]diltiazem to pregnant rat uterine membranes was examined. Drotaverine inhibited the specific [(3)H]nitrendipine and [(3)H]diltiazem bindings with IC(50) values of 5.6 and 2.6 microM, respectively. Saturation studies showed that diltiazem caused a significant increase in the maximum binding density without changing the K(D) of [(3)H]nitrendipine while drotaverine increased both the K(D) and the B(max) of [3H]nitrendipine. The dissociation kinetics of both [3H]nitrendipine and [(3)H]diltiazem were accelerated by drotaverine. These results suggest that drotaverine has a negative allosteric interaction with the binding sites for 1,4-dihydropyridines and 1,5-benzothiazepines on the L-type Ca(2+) channel in pregnant rat uterine membranes, which may have implications as to the potential usefulness of this drug in aiding child delivery.


Calcium Channel Blockers/pharmacology , Calcium Channels, L-Type/drug effects , Papaverine/analogs & derivatives , Papaverine/pharmacology , Pregnancy, Animal/physiology , Uterus/metabolism , 3',5'-Cyclic-AMP Phosphodiesterases/antagonists & inhibitors , Animals , Binding, Competitive/drug effects , Calcium Channel Blockers/metabolism , Calcium Channels, L-Type/metabolism , Cyclic Nucleotide Phosphodiesterases, Type 4 , Diltiazem/metabolism , Diltiazem/pharmacology , Female , Half-Life , In Vitro Techniques , Kinetics , Membranes/drug effects , Membranes/metabolism , Nitrendipine/metabolism , Nitrendipine/pharmacology , Papaverine/metabolism , Parasympatholytics/pharmacology , Phosphodiesterase Inhibitors/pharmacology , Pregnancy , Radioligand Assay , Rats , Rats, Sprague-Dawley , Uterus/drug effects
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