Design of [R-(Z)]-(+)-α-(Methoxyimino)-1-azabicyclo[2.2.2]octane-3-acetonitrile (SB 202026), a Functionally Selective Azabicyclic Muscarinic M1 Agonist Incorporating the N-Methoxy Imidoyl Nitrile Group as a Novel Ester Bioisostere

Journal of Medicinal Chemistry
1997.0

Abstract

Loss of cholinergic function is believed to be implicated in the cognitive decline associated with senile dementia of the Alzheimer type (SDAT). The disease is characterized by progressive loss of muscarinic receptors located on nerve terminals while postsynaptic muscarinic M1 receptors appear to remain largely intact. Muscarinic agonists acting directly on postsynaptic receptors offer the prospect of countering the cholinergic deficit in SDAT. This study describes a novel series of azabicyclic muscarinic agonists, which incorporate an oxime ether or modified oxime ether group as an ester bioisostere. Modification of the oxime ether function by the introduction of electron withdrawing groups led to the finding that the (Z)-N-methoxy imidoyl nitrile group serves as a stable methyl ester bioisostere. This culminated in the discovery of the quinuclidinyl N-methoxy imidoyl nitrile R-(+)-(Z)-5g which is a functionally selective muscarinic M1 partial agonist currently in phase III clinical trials for the treatment of SDAT. The selective profile of R-(+)-(Z)-5g can be rationalized in terms of the relative affinity of the compound at muscarinic receptor subtypes, the degree of agonist efficacy, and brain penetrancy.

Knowledge Graph

Similar Paper

Design of [R-(Z)]-(+)-α-(Methoxyimino)-1-azabicyclo[2.2.2]octane-3-acetonitrile (SB 202026), a Functionally Selective Azabicyclic Muscarinic M1 Agonist Incorporating the N-Methoxy Imidoyl Nitrile Group as a Novel Ester Bioisostere
Journal of Medicinal Chemistry 1997.0
Comparison of azabicyclic esters and oxadiazoles as ligands for the muscarinic receptor
Journal of Medicinal Chemistry 1991.0
Novel quinuclidine-based ligands for the muscarinic cholinergic receptor
Journal of Medicinal Chemistry 1990.0
Bridged 1,2,5,6-tetrahydropyridine esters and oxime ethers related to arecoline are novel and potent muscarinic agonists
Bioorganic & Medicinal Chemistry Letters 1994.0
Affinity and selectivity of the optical isomers of 3-quinuclidinyl benzilate and related muscarinic antagonists
Journal of Medicinal Chemistry 1988.0
Synthesis and muscarinic receptor activity of ester derivatives of 2-substituted 2-azabicyclo[2.2.1]heptan-5-ol and -6-ol
Journal of Medicinal Chemistry 1992.0
Substituent variation in azabicyclic triazole- and tetrazole-based muscarinic receptor ligands
Journal of Medicinal Chemistry 1992.0
Functionally selective M1 muscarinic agonists. 3. Side chain and azacycles contributing to functional muscarinic selectivity among pyrazinylazacycles
Journal of Medicinal Chemistry 1995.0
Muscarinic receptor binding and activation of second messengers by substituted N-methyl-N-[4-(1-azacycloalkyl)-2-butynyl]acetamides
Journal of Medicinal Chemistry 1991.0
Synthesis and biological activity of 1,2,4-oxadiazole derivatives: highly potent and efficacious agonists for cortical muscarinic receptors
Journal of Medicinal Chemistry 1990.0