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Duloxetine ((S)-Duloxetine)

Catalog No.GC31064

La duloxétine ((S)-Duloxétine) est un inhibiteur de la recapture de la sérotonine-norépinéphrine avec un Ki de 4,6 nM, utilisé pour le traitement du trouble dépressif majeur et du trouble anxieux généralisé (GAD).

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Duloxetine ((S)-Duloxetine) Chemical Structure

Cas No.: 116539-59-4

Taille Prix Stock Qté
10mg
74,00 $US
En stock
50mg
220,00 $US
En stock

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Sample solution is provided at 25 µL, 10mM.

Description Chemical Properties Product Documents Related Products

Duloxetine is a serotonin-norepinephrine reuptake inhibitor with Ki of 4.6 nM, used for treatment of major depressive disorder and generalized anxiety disorder (GAD). Target: SNRIsDuloxetine inhibits the reuptake of serotonin and norepinephrine in the central nervous system. Duloxetine is also considered a less potent inhibitor of dopamine reuptake. However, duloxetine has no significant affinity for dopaminergic, adrenergic, cholinergic, histaminergic, opioid, glutamate, and GABA receptors and can therefore be considered to be a selective reuptake inhibitor at the 5-HT and NA transporters. Duloxetine undergoes extensive metabolism, but the major circulating metabolites do not contribute significantly to the pharmacologic activity. Major depressive disorder is believed to be due in part to an increase in pro-inflammatory cytokines within the central nervous system. Antidepressants including ones with a similar mechanism of action as duloxetine, i.e. serotonin metabolism inhibition, cause a decrease in proinflammatory cytokine activity and an increase in anti-inflammatory cytokines; this mechanism may apply to duloxetine in its effect on depression but research on cytokines specific to duloxetine therapy is lacking [1]. The analgesic properties of duloxetine in the treatment of diabetic neuropathy and central pain syndromes such as fibromyalgia are believed to be due to sodium ion channel blockade [2].

[1]. De Berardis, D., et al., The effect of newer serotonin-noradrenalin antidepressants on cytokine production: a review of the current literature. Int J Immunopathol Pharmacol, 2010. 23(2): p. 417-22. [2]. Wang, S.Y., J. Calderon, and G. Kuo Wang, Block of neuronal Na+ channels by antidepressant duloxetine in a state-dependent manner. Anesthesiology, 2010. 113(3): p. 655-65.

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