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[D-1-Nal4]endomorphin-2 is a potent micro-opioid receptor antagonist in the aequorin luminescence-based calcium assay

Fichna, J.
Piestrzeniewicz, M.
Gach, K.
Burgeon, E.
Broeck, Vanden
Janecka, A.E.
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Abstract

A functional assay, based on aequorin-derived luminescence triggered by receptor-mediated changes in Ca(2+) levels, was used to examine relative potency and efficacy of the micro-opioid receptor antagonists. A series of position 3- and 4-substituted endomorphin-2 (Tyr-Pro-Phe-Phe-NH(2)) analogues containing D-3-(1-naphthyl)-alanine (D-1-Nal) or D-3-(2-naphthyl)-alanine (D-2-Nal), which were previously shown to reverse antinociception induced by endomorphin-2 in the in vivo hot-plate test in mice, was tested in the aequorin luminescence-based calcium assay to examine their micro-opioid antagonist potency in vitro. A recombinant mammalian cell line expressing the micro-opioid receptor together with a luminescent reporter protein, apoaequorin, was used in the study. The results obtained in this functional assay indicated that analogues with D-1-Nal or D-2-Nal substitutions in position 4 of endomorphin-2 are strong micro-opioid receptor antagonists, while those substituted in position 3 are partial agonists. Exceptional antagonist potency in the calcium assay was observed for [D-1-Nal(4)]endomorphin-2. The pA(2) value for this analogue was 7.95, compared to the value of 8.68 obtained for the universal, non-selective opioid antagonist of the alkaloid structure, naloxone. The obtained results were compared with the data from the hot-plate test in mice. In that in vivo assay [D-1-Nal(4)]endomorphin-2 was also the most potent analogue of the series

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2006-08-08
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Peer reviewed scientific article
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a, Aequorin, agonists, analysis, Animals, antagonists & inhibitors, article, Biological Assay, Calcium, Cell, Cell Line, Change, Changes, chemistry, Cho Cells, Cricetinae, data, Drug Evaluation,Preclinical, Functional, im, in vivo, IS, journal, Laboratories, LEVEL, levels, Luminescent Measurements, medical, methods, mice, observed, Oligopeptides, pharmacology, Print, protein, Receptor, receptors, Receptors,Opioid, recombinant, relative, Research, Research Support, result, results, SB - IM, series, structure, study, Test, Universities, university
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