Title of article :
Investigation of platelet aggregation inhibitory activity by phenyl amides and esters of piperidinecarboxylic acids Original Research Article
Author/Authors :
Modesto de Candia، نويسنده , , Luciana Summo، نويسنده , , Antonio Carrieri، نويسنده , , Cosimo Altomare، نويسنده , , Adele Nardecchia، نويسنده , , Saverio Cellamare، نويسنده , , Angelo Carotti، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
12
From page :
1439
To page :
1450
Abstract :
A series of anilides and phenyl esters of piperidine-3-carboxylic acid (nipecotic acid) were synthesized and tested for the ability to inhibit aggregation of human platelet rich-plasma triggered by adenosine 5′-diphosphate (ADP) and adrenaline. As a rule, amides were about two times more active than the corresponding esters, and derivatives bearing substituents at the para position of the phenyl ring were significantly more active than the meta-substituted ones. Among the tested compounds, 4-hexyloxyanilide of nipecotic acid (18a) was found to be the most active one, its IC50 value being close to that of the most active bis-3-carbamoylpiperidines reported in literature (ca. 40 μM) and aspirin (ca. 60 μM) in ADP- and adrenaline-induced aggregation, respectively. Compared with the isomeric 4-hexyloxyanilides of piperidine-2-carboxylic (pipecolinic) and piperidine-4-carboxylic (isonipecotic) acids, compound 18a showed higher activity, and a Hansch-type quantitative structure–activity relationship (QSAR) study highlighted lipophilicity and increase in electron density of the phenyl ring as the properties which mainly increase the antiplatelet activity (r2=0.74, q2=0.64). The interaction of nipecotoyl anilides with phosphatidylinositol, a major component of the inner layer of the platelet membranes, was investigated by means of flexible docking calculation methods to give an account of a key event underlying their biological action.
Journal title :
Bioorganic and Medicinal Chemistry
Serial Year :
2003
Journal title :
Bioorganic and Medicinal Chemistry
Record number :
1302632
Link To Document :
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