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brain ischemia/kopfschmerz

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13 Ergebnisse

Cyclohexylamine derivatives as subtype selective N-Methyl-D-Aspartate antagonists

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FIELD OF THE INVENTION The invention provides cyclohexylamine derivatives as N-Methyl-D-Aspartate (NMDA) antagonists, pharmacological compositions comprising the derivatives, and methods of treating diseases and disorders responsive to antagonism of NMDA receptors using the derivatives. BACKGROUND

4-substituted piperidine analogs and their use as subtype selective NMDA receptor antagonists

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BACKGROUND OF THE INVENTION 1. Field of the Invention This invention is related to 4-substituted piperidine analogs, including hydroxypiperidine and tetrahydropyridine analogs, as well as novel intermediates of the 4-substituted analogs. The analogs are selectively active as antagonists of

4-substituted piperidine analogs and their use as subtype selective NMDA receptor antagonists

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BACKGROUND OF THE INVENTION 1. Field of the Invention This invention is related to 4-substituted piperidine analogs, including hydroxypiperidine and tetrahydropyridine analogs, as well as novel intermediates of the 4-substituted analogs. The analogs are selectively active as antagonists of

2-substituted piperidine analogs and their use as subtype-selective NMDA receptor antagonists

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BACKGROUND OF THE INVENTION 1. Field of the Invention This invention is related to 2-substituted piperidine analogs. The analogs are selectively active as antagonists of N-methyl-D-aspartate (NMDA) receptor subtypes. The invention is also directed to the use of 2-substituted piperidine analogs as

2-substituted piperidine analogs and their use as subtype-selective NMDA receptor antagonists

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BACKGROUND OF THE INVENTION 1. Field of the Invention This invention is related to 2-substituted piperidine analogs. The analogs are selectively active as antagonists of N-methyl-D-aspartate (NMDA) receptor subtypes. The invention is also directed to the use of 2-substituted piperidine analogs as

4-substituted piperidine analogs and their use as subtype selective NMDA receptor antagonists

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BACKGROUND OF THE INVENTION 1. Field of the Invention This invention is related to 4-substituted piperidine analogs, including hydroxypiperidine and tetrahydropyridine analogs. The analogs are selectively active as antagonists of N-methyl-D-aspartate (NMDA) receptor subtypes. The invention is also

Piperidine derivatives as subtype selective N-Methyl-D-Aspartate antagonists

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FIELD OF INVENTION The invention relates to piperidine derivatives as N-Methyl-D-Aspartate (NMDA) antagonists useful in the treatment of diseases and disorders responsive to antagonism of NMDA receptors. BACKGROUND OF THE INVENTION Many of the physiological and pathophysiological effects of the

Amines that inhibit a mammalian anandamide transporter, and methods of use thereof

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BACKGROUND OF THE INVENTION Mammalian Endogenous Cannabinoid System The various elements of the mammalian endogenous cannabinoid system (ECS) constitute a variety of pharmacological targets for the broad group of compounds generally termed as cannabinoids. Included among these elements are two types

Amines that inhibit a mammalian anandamide transporter, and methods of use thereof

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BACKGROUND OF THE INVENTION Mammalian Endogenous Cannabinoid System The various elements of the mammalian endogenous cannabinoid system (ECS) constitute a variety of pharmacological targets for the broad group of compounds generally termed as cannabinoids. Included among these elements are two types

Amines that inhibit a mammalian anandamide transporter, and methods of use thereof

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BACKGROUND OF THE INVENTION Mammalian Endogenous Cannabinoid System The various elements of the mammalian endogenous cannabinoid system (ECS) constitute a variety of pharmacological targets for the broad group of compounds generally termed as cannabinoids. Included among these elements are two types

Aminoadamantane derivatives as therapeutic agents

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BACKGROUND OF THE INVENTION Certain adamantane derivatives have been used to treat illnesses. Rimantadine (1-(1-aminoethyl)adamantane) is used for the prophylaxis and treatment of influenza in humans. Amantadine has been used for the treatment of both influenza and Parkinson's disease (Schwab et

Aminoadamantane derivatives as therapeutic agents

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BACKGROUND OF THE INVENTION Certain adamantane derivatives have been used to treat illnesses. Rimantadine (1-(1-aminoethyl)adamantane) is used for the prophylaxis and treatment of influenza in humans. Amantadine has been used for the treatment of both influenza and Parkinson's disease (Schwab et

Aminoadamantane derivatives as therapeutic agents

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BACKGROUND OF THE INVENTION Certain adamantane derivatives have been used to treat illnesses. Rimantadine (1-(1-aminoethyl)adamantane) is used for the prophylaxis and treatment of influenza in humans. Amantadine has been used for the treatment of both influenza and Parkinson's disease (Schwab et
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