Synthesis and antagonistic activities of enantiomers of cyclic platelet-activating factor analogues.
Hideki T. Miyazaki, Norio Nakamura, Tomiyoshi Ito, Toshio Sada, Takeshi Oshima, Hiroyuki Koike
Abstract
Open-access reader
Hideki T. Miyazaki, Norio Nakamura, Tomiyoshi Ito, Toshio Sada, Takeshi Oshima, Hiroyuki Koike
Abstract
Open-access reader
Enantiomers of platelet-activating factor (PAF) antagonists, 3-(6-[O-(trans-3-heptadecylcarbamoyloxytetrahydropyran-2-yl)methyl ] phosphonoxy)hexylthiazolium (inner salt) (3), 3-[5-(trans-3-heptadecylcarbamoyloxytetrahydropyran-2-yl) methoxycarbonylamino]pentylthiazolium bromide (4) and 3-(5-[O-(cis-3-heptadecylcarbamoylthiotetrahydropyran-2-yl) methyl]phosphonoxy)pentylthiazolium (inner salt) (5), were synthesized, starting from (2R,2R)- and (2S,2S)-tartaric acid. Antagonistic activities of these compounds against C16-PAF were measured in vitro (rabbit platelet aggregation, IC50) and in vivo (hypotension in rats, ID50). In these three enantiomeric pairs, the (3S)-(tetrahydropyran numbering) enantiomers were one order more potent than the (3R)-isomers: (2R,3S)-3a (R-74,654), IC50 0.59 microM and ID50 0.054 mg/kg, i.v.; (2S,3R)-3b, IC50 4.7 microM and ID50 0.30 mg/kg, i.v.; (2R,3S)-4a, IC50 0.20 microM and ID50 0.032 mg/kg, i.v.; (2S,3R)-4b, IC50 2.2 microM and IC40 0.21 mg/kg, i.v.; (2R,3R)-5a, IC50 1.1 microM and ID50 0.92 mg/kg, i.v.; (2S,3S)-5b (R-74,717), IC50 0.27 microM and ID50 0.064 mg/kg, i.v.
OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Enantiomers of platelet-activating factor (PAF) antagonists, 3-(6-[O-(trans-3-heptadecylcarbamoyloxytetrahydropyran-2-yl)methyl ] phosphonoxy)hexylthiazolium (inner salt) (3), 3-[5-(trans-3-heptadecylcarbamoyloxytetrahydropyran-2-yl) methoxycarbonylamino]pentylthiazolium bromide (4) and 3-(5-[O-(cis-3-heptadecylcarbamoylthiotetrahydropyran-2-yl) methyl]phosphonoxy)pentylthiazolium (inner salt) (5), were synthesized, starting from (2R,2R)- and (2S,2S)-tartaric acid. Antagonistic activities of these compounds against C16-PAF were measured in vitro (rabbit platelet aggregation, IC50) and in vivo (hypotension in rats, ID50). In these three enantiomeric pairs, the (3S)-(tetrahydropyran numbering) enantiomers were one order more potent than the (3R)-isomers: (2R,3S)-3a (R-74,654), IC50 0.59 microM and ID50 0.054 mg/kg, i.v.; (2S,3R)-3b, IC50 4.7 microM and ID50 0.30 mg/kg, i.v.; (2R,3S)-4a, IC50 0.20 microM and ID50 0.032 mg/kg, i.v.; (2S,3R)-4b, IC50 2.2 microM and IC40 0.21 mg/kg, i.v.; (2R,3R)-5a, IC50 1.1 microM and ID50 0.92 mg/kg, i.v.; (2S,3S)-5b (R-74,717), IC50 0.27 microM and ID50 0.064 mg/kg, i.v.
Key concepts: Chemistry, Enantiomer, Stereochemistry, IC50, In vivo, Platelet-activating factor, Bromide, In vitro