1176316-99-6
Chemical Structure
Agomelatine hydrochloride
Synonym(s): S-20098 hydrochloride
- CAS No.: 1176316-99-6
- Formula:C15H18ClNO2
- Molecular Weight:279.76
IUPAC Name: N-(2-(7-methoxynaphthalen-1-yl)ethyl)acetamide hydrochloride
InChIKey: ZJVMEXOLMFNQPX-UHFFFAOYSA-N
SMILES: CC(NCCC1=C2C=C(OC)C=CC2=CC=C1)=O.Cl
Biological Activity: Agomelatine hydrochloride (S-20098 hydrochloride) is a specific agonist of MT1 and MT2 receptors with Kis of 0.1, 0.06, 0.12, and 0.27 nM for CHO-hMT1, HEK-hMT1, CHO-hMT2, and HEK-hMT2, respectively[1]. Agomelatine hydrochloride is a selective 5-HT2C receptor antagonist with pKis of 6.4 and 6.2 at native (porcine) and cloned, human 5-HT2C receptors, respectively[2].
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Agomelatine hydrochloride | 99.98% | Agomelatine hydrochloride (S-20098 hydrochloride) is a specific agonist of MT1 and MT2 receptors with Kis of 0.1, 0.06, 0.12, and 0.27 nM for CHO-hMT1, HEK-hMT1, CHO-hMT2, and HEK-hMT2, respectively. Agomelatine hydrochloride is a selective 5-HT2C receptor antagonist with pKis of 6.4 and 6.2 at native (porcine) and cloned, human 5-HT2C receptors, respectively. | ||||||||||||||||||||
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Agomelatine hydrochloride (Standard) | ≥98% | Agomelatine (hydrochloride) (Standard) is the analytical standard of Agomelatine (hydrochloride). This product is intended for research and analytical applications. Agomelatine hydrochloride (S-20098 hydrochloride) is a specific agonist of MT1 and MT2 receptors with Kis of 0.1, 0.06, 0.12, and 0.27 nM for CHO-hMT1, HEK-hMT1, CHO-hMT2, and HEK-hMT2, respectively. Agomelatine hydrochloride is a selective 5-HT2C receptor antagonist with pKis of 6.4 and 6.2 at native (porcine) and cloned, human 5-HT2C receptors, respectively. | ||||||||||||||||||||
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- [1]. Audinot V, et al. New selective ligands of human cloned melatonin MT1 and MT2 receptors. Naunyn Schmiedebergs Arch Pharmacol. 2003 Jun;367(6):553-61. [Content Brief]
- [2]. Millan MJ, et al. The novel melatonin agonist agomelatine (S20098) is an antagonist at 5-hydroxytryptamine2C receptors, blockade of which enhances the activity of frontocortical dopaminergic and adrenergic pathways. J Pharmacol Exp Ther. 2003 Sep;306(3):954-64. [Content Brief]