A novel μ-conopeptide, CnIIIC, exerts potent and preferential inhibition of NaV1.2/1.4 channels and blocks neuronal nicotinic acetylcholine receptors
Author
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Favreau, Philippe
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Benoit, Evelyne
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Hocking, Henry G.
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Carlier, Ludovic
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D'Hoedt, Dieter
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Leipold, Enrico
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Markgraf, René
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Schlumberger, Sébastien
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Córdova, Marco A.
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Gaertner, Hubert
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Paolini-Bertrand, Marianne
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Hartley, Oliver
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Tytgat, Jan
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Heinemann, Stefan H.
Author
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Bert
Admission date
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2018-12-20T14:13:18Z
Available date
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2018-12-20T14:13:18Z
Publication date
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2012
Cita de ítem
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British Journal of Pharmacology, Volumen 166, Issue 5, 2018, Pages 1654-1668
Identifier
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00071188
Identifier
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14765381
Identifier
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10.1111/j.1476-5381.2012.01837.x
Identifier
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https://repositorio.uchile.cl/handle/2250/154949
Abstract
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BACKGROUND AND PURPOSE The μ-conopeptide family is defined by its ability to block voltage-gated sodium channels (VGSCs), a property that can be used for the development of myorelaxants and analgesics. We characterized the pharmacology of a new μ-conopeptide (μ-CnIIIC) on a range of preparations and molecular targets to assess its potential as a myorelaxant. EXPERIMENTAL APPROACH μ-CnIIIC was sequenced, synthesized and characterized by its direct block of elicited twitch tension in mouse skeletal muscle and action potentials in mouse sciatic and pike olfactory nerves. μ-CnIIIC was also studied on HEK-293 cells expressing various rodent VGSCs and also on voltage-gated potassium channels and nicotinic acetylcholine receptors (nAChRs) to assess cross-interactions. Nuclear magnetic resonance (NMR) experiments were carried out for structural data. KEY RESULTS Synthetic μ-CnIIIC decreased twitch tension in mouse hemidiaphragms (IC50= 150 nM), and displayed a higher blocking effect in mouse e