Title of article :
Enzyme-catalyzed prodrug approaches for the histamine H3-receptor agonist (R)-α-methylhistamine Original Research Article
Author/Authors :
Holger Stark، نويسنده , , Michael Krause، نويسنده , , Agnès Rouleau، نويسنده , , Monique Garbarg، نويسنده , , Jean Charles Schwartz، نويسنده , , Walter Schunack، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2001
Pages :
8
From page :
191
To page :
198
Abstract :
Five novel prodrug types of the potent and selective histamine H3-receptor agonist (R)-α-methylhistamine (1) were prepared and pharmacologically tested in vitro as well as in vivo. In particular, an amide of fatty acid, mono- and dicarbamates, an (acyloxy)alkylcarbamate, and a diphthalidyl derivative were synthesized, all of which require initial prodrug activation through an enzyme-catalyzed reaction in contrast to formerly developed azomethine prodrugs which are cleaved by chemical hydrolysis only. Further drug liberation may ensue spontaneously in a cascade to give 1. Since they have diverse stabilities the prodrugs were investigated for drug liberation in vitro under neutral, acidic, and basic conditions at different temperatures as well as with liver homogenates. In vivo investigation of prodrugs after oral administration to mice proved that the fatty amide 2, the Nα-methylcarbamate 4a, and the Nα-(1-(acetyloxy)ethylcarbamate) 5 showed moderate to high plasma levels of 1. Compound 5 displayed even more than 2.5 times the AUC for 1 than that of the reference azomethine prodrug BP2.94 in the periphery and also displayed a detectable drug level in the central nervous system. It was shown that prodrug approaches based on an initial enzyme-catalyzed liberation step are successfully applicable to different pro-moieties for improved bioavailability and prolonged half-live. These approaches may also be used for other aminergic compounds of this class to optimize pharmacokinetic behavior.
Journal title :
Bioorganic and Medicinal Chemistry
Serial Year :
2001
Journal title :
Bioorganic and Medicinal Chemistry
Record number :
1301329
Link To Document :
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