Abstract:
Novel 3-pyridyloxymethyl heterocyclic ether compounds of formula (I) or the pharmaceutically-acceptable salts or prodrugs thereof are selective and potent ligands at neuronal nicotinic cholinergic channel receptors, and are effective in controlling synaptic transmission. Key intermediates and processes using this key intermediates to produce compounds of formula (I) with the variables defined in the specification are also described.
Abstract:
Novel compounds having formulas (I), (II) or (III) or pharmaceutically-acceptable salts or prodrugs thereof, which are useful for controlling synaptic transmission; to therapeutically-effective pharmaceutical compositions of these compounds; and to the use of said compositions to controlling synaptic transmission in human or veterinary patients.
Abstract:
Novel 3-pyridyloxymethyl heterocyclic ether compounds of formula (I) or the pharmaceutically-acceptable salts or prodrugs thereof are selective and potent ligands at neuronal nicotinic cholinergic channel receptors, and are effective in controlling synaptic transmission. Key intermediates and processes using this key intermediates to produce compounds of formula (I) with the variables defined in the specification are also described.
Abstract:
Novel compounds having formulas (I), (II) or (III) or pharmaceutically-acceptable salts or prodrugs thereof, which are useful for controlling synaptic transmission; to therapeutically-effective pharmaceutical compositions of these compounds; and to the use of said compositions to controlling synaptic transmission in human or veterinary patients.
Abstract:
A series of 3-pyrrolidinyloxy-3'-pyridyl ether compounds, a method for selectively controlling neurotransmitter release in mammals using these compounds, and pharmaceutical compositions including these compounds. Preferred compounds are 3-pyrrolidinylmethoxy-3'-(5'-and/or 6'-substituted) pyridyl ethers.
Abstract:
Novel heterocyclic ether compounds having formula (I) wherein A, m, R, X, Y?1, Y2 and Y3¿ are specifically defined, which are useful in selectively controlling chemical synaptic transmission; therapeutically-effective pharmaceutical compositions thereof; and use of said compositions to selectively control synaptic transmission in mammals.