Enantiomeric N-methyl-4-piperidyl benzilates as muscarinic receptor ligands: Radioligand binding studies and docking studies to models of the three muscarinic receptors M1, M2 and M3

2006 ◽  
Vol 14 (6) ◽  
pp. 1729-1736 ◽  
Author(s):  
Jana Selent ◽  
Wolfgang Brandt ◽  
Dirk Pamperin ◽  
Berthold Göber
1990 ◽  
Vol 258 (6) ◽  
pp. C982-C987 ◽  
Author(s):  
B. Winding ◽  
N. Bindslev

We have attempted to characterize a muscarinic receptor subtype involved in Cl- secretion in isolated epithelium of hen trachea, taking advantage of drugs developed in the last 15 yr. Hen trachea can be stimulated to secrete Cl- equal to approximately 80-90 microA/cm2 by application of acetylcholine (ACh) to the serosal side. The process has an apparent dissociation constant (Kd) for ACh of 740 nM. The Cl- secretion is completely inhibited by 20 microM bumetanide at the serosal side. Of five selective antagonists for muscarinic receptors, pirenzepine, hexahydrosiladifenidol, dicyclomine, 11-([2-[(diethylamino)-methyl]-1-piperidinyl]acetyl)-5,11- dihydro-6H-pyrido(2,3-b)(1,4)benzodiazepine-6-one, and 4 diphenyl acetoxy-N-methylpiperidine methobromide, only the latter had a high affinity for the functional receptor with an apparent Kd of 3 nM. The receptor may be classified as an M4-muscarinic receptor subtype and probably belongs to a group of muscarinic receptors on exocrine glands and mucosal cells involved in ion transport. All the functional responses caused by muscarinic agonists and antagonists tested exhibited exponents (apparent Hill coefficients) in the range from 1.3 to 2.4, indicating a gain in the stimulus secretion coupling mechanism, an aspect of muscarinic receptor function that is not revealed in radioligand binding studies.


1991 ◽  
Vol 196 (3) ◽  
pp. 247-255 ◽  
Author(s):  
Friedrich Brunner ◽  
Elisabeth Kühberger ◽  
Jürgen Schloos ◽  
Walter R. Kukovetz

Author(s):  
Sneha Singh ◽  
Madhwi Ojha ◽  
Divya Yadav ◽  
Sonja Kachler ◽  
Karl-Norbert Klotz ◽  
...  

Background: ABSTRACT: Background: 8-Phenyltheophylline derivatives exhibit prophylactic effects at a specific dose but do not produce the cardiovascular or emetic side effects associated with xanthines, thereby exhibiting unique characteristics of potential therapeutic importance. Methods: Novel series of 8-(proline/pyrazole)-substituted xanthine analogs has been synthesized. The affinity and selectivity of compounds to adenosine receptors have been assessed by radioligand binding studies. The synthesized compounds also showed good bronchospasmolytic properties (increased onset of bronchospasm; decreased duration of jerks) with 100% survival of animals in comparison to the standard drug. Besides, compound 8f & 9f showed good binding affinity in comparison to other synthesized compounds in the micromolar range. Results: The maximum binding affinity of these compounds was observed for A2B receptors, which is ~ 7 or 10 times higher as compared to A1, A2A and A3 receptors. The newly synthesized derivatives 8f, 9a-f, 17g-m, and 18g-m displayed significant protection against histamine aerosol induced bronchospasm in guinea pigs. Conclusion: Newly synthesized proline/pyrazole based xanthines compounds showed a satisfactory binding affinity for adenosine receptor subtypes. Replacement or variation of substituted proline ring with substituted pyrazole scaffold at 8thposition of xanthine moiety resulted in the reduction of adenosine binding affinity and bronchospasmolytic effects.


Author(s):  
Ad P. Ijzerman ◽  
Armand Voorschuur ◽  
Marieke Kruidering ◽  
Irene M. Pirovano ◽  
Herman Van Belle ◽  
...  

1998 ◽  
Vol 88 (3) ◽  
pp. 744-750 ◽  
Author(s):  
Vivian Y. Hou ◽  
Carol A. Hirshman ◽  
Charles W. Emala

Background Neuromuscular relaxants such as pancuronium bind to M2 and M3 muscarinic receptors as antagonists. Blockade of muscarinic receptors in atria of the M2 subtype mediates tachycardia. In the lung, blockade of M2 receptors on parasympathetic nerves potentiates vagally induced bronchospasm, whereas blockade of M3 receptors on bronchial smooth muscle inhibits bronchospasm. The current study was designed to quantify the affinity of a series of neuromuscular relaxants for the M2 and M3 muscarinic receptors, which were individually stably transfected in Chinese hamster ovary cell lines. Methods Competitive radioligand binding assays determined the relative binding affinities of the neuromuscular relaxants pancuronium, succinylcholine, mivacurium, doxacurium, atracurium, rocuronium, gallamine, and pipecuronium for the muscarinic receptor in the presence of a muscarinic receptor antagonist (3H-QNB) in membranes prepared from cells individually expressing either the M2 or M3 muscarinic receptor. Results All muscle relaxants evaluated displaced 3H-QNB from muscarinic receptors. The relative order of potency for the M2 muscarinic receptor (highest to lowest) was pancuronium, gallamine, rocuronium, atracurium, pipecuronium, doxacurium, mivacurium, and succinylcholine. The relative order of potency for the M3 muscarinic receptor (highest to lowest) was pancuronium, atracurium, pipecuronium, rocuronium, mivacurium, gallamine, succinylcholine, and doxacurium. Conclusions All neuromuscular relaxants studied had affinities for the M2 and M3 muscarinic receptor, but only pancuronium and gallamine had affinities within the range of concentrations achieved with clinical use. The high affinities of gallamine and pancuronium for the M2 muscarinic receptor are consistent with a mechanism of M2 receptor blockade in relaxant-induced tachycardia.


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