N6-Cyclopentyl-3‘-substituted-xylofuranosyladenosines:  A New Class of Non-Xanthine Adenosine A1 Receptor Antagonists

Journal of Medicinal Chemistry
1997.0

Abstract

The present study explores the C-3' site of the 3-deoxy-3-xylofuranosyl ring of nucleoside analogues with an adenine or N6-cyclopentyladenine (CPA) base moiety and evaluates the effect on adenosine receptor affinity. Two series of sugar-modified adenosines, i.e., 3'-amido-3'-deoxyadenosines and 3'-amidated 3'-deoxyxylofuranosyladenines, were synthesized and tested for their affinity at A1 and A2a receptors in rat brain cortex and rat striatum, respectively. The modest affinity found in the "xylo series" prompted us to synthesize the corresponding N6-cyclopentyl derivatives, which proved to be well accommodated by the A1 receptors with potencies in the lower nanomolar range. This represents a new perspective in the purinergic field. The absence of a GTP-induced shift, i.e., the ratio between the affinities measured in the presence and absence of 1 mM GTP indicates an antagonistic behavior of this new class of CPA analogues.

Knowledge Graph

Similar Paper

N<sup>6</sup>-Cyclopentyl-3‘-substituted-xylofuranosyladenosines:  A New Class of Non-Xanthine Adenosine A<sub>1</sub> Receptor Antagonists
Journal of Medicinal Chemistry 1997.0
5‘-Substituted Adenosine Analogs as New High-Affinity Partial Agonists for the Adenosine A<sub>1</sub> Receptor
Journal of Medicinal Chemistry 1998.0
N6-Cycloalkyladenosines. Potent, A1-selective adenosine agonists
Journal of Medicinal Chemistry 1985.0
8-Polycycloalkyl-1,3-dipropylxanthines as potent and selective antagonists for A1-adenosine receptors
Journal of Medicinal Chemistry 1992.0
Discovery and Structure–Activity Relationship Studies of Novel Adenosine A<sub>1</sub> Receptor-Selective Agonists
Journal of Medicinal Chemistry 2022.0
Discovery of 1,3-diethyl-7-methyl-8-(phenoxymethyl)-xanthine derivatives as novel adenosine A 1 and A 2A receptor antagonists
Bioorganic &amp; Medicinal Chemistry Letters 2016.0
1,3,7-Triethyl-substituted xanthines—possess nanomolar affinity for the adenosine A1 receptor
Bioorganic &amp; Medicinal Chemistry 2015.0
5‘-O-Alkyl Ethers of N,2-Substituted Adenosine Derivatives:  Partial Agonists for the Adenosine A<sub>1</sub> and A<sub>3</sub> Receptors
Journal of Medicinal Chemistry 2001.0
2‘-C-Methyl Analogues of Selective Adenosine Receptor Agonists:  Synthesis and Binding Studies
Journal of Medicinal Chemistry 1998.0
Search for New Purine- and Ribose-Modified Adenosine Analogs as Selective Agonists and Antagonists at Adenosine Receptors
Journal of Medicinal Chemistry 1995.0