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(Reference retrieved automatically from Web of Science through information on FAPESP grant and its corresponding number as mentioned in the publication by the authors.)

New 2-Aminothiazoline derivatives lower blood pressure of spontaneously hypertensive rats (SHR) via I-1-imidazoline and alpha-2 adrenergic receptors activation

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Author(s):
Ferreira, Renan B. ; De Oliveira, Mariana G. ; Antunes, Edson ; Almeida, Wanda P. ; Ibrahim, Badr M. ; Abdel-Rahman, Abdel A.
Total Authors: 6
Document type: Journal article
Source: European Journal of Pharmacology; v. 791, p. 803-810, NOV 15 2016.
Web of Science Citations: 1
Abstract

2-Aminothiazolines share an isosteric relationship with imidazolines and oxazolines with antihypertensive activity mainly mediated by the imidazoline I-1-receptor. In the present work, we have prepared five aminothiazolines, following a previously described synthetic pathway. Aminothiazolines derived from dicyclo-propylmethylamine (ATZ1) and cyclohexylamine (3) are unprecedented in the literature. Competitive radioligand assay was carried out with all synthetic compounds, and the I-1 receptor affinity in comparison to rilmenidine in PC12 cells was determined. Surprisingly, the rilmenidine isoster (ATZ1) showed no I-1-receptor interaction. Diethyl (ATZ4) and 2-ethyl-hexylamine (ATZ5) derivatives bind to the receptor with 11.98 and 10.94 nmol/l, respectively. These compounds were selected for in vivo experiments. Both compounds reduced the blood pressure of spontaneously hypertensive rats (SHR). The hypotensive effect of these compounds was abrogated in the presence of a(2) adrenergic (yohimbine) and I-1 (efaroxan) receptor antagonists suggesting that both aminothiazolines bind to the adrenergic and imidazoline receptors. Lipinski's descriptors of the synthesized aminothiazolines were calculated and are similar to the known imidazoline I-1 receptor ligands. 3D-Similarity between ATZ5 and agmatine, the natural imidazoline receptor ligand, was also observed. (AU)

FAPESP's process: 08/06397-1 - Synthesis and evaluation of aminothiazolines as potential ligands for imidazolinic receptors
Grantee:Wanda Pereira Almeida
Support Opportunities: Regular Research Grants