2748778-97-2
Chemical Structure
THIP-d4
Synonym(s): Gaboxadol-d4
- CAS No.: 2748778-97-2
- Formula:C6H4D4N2O2
- Molecular Weight:144.16
InChIKey: ZXRVKCBLGJOCEE-LNLMKGTHSA-N
SMILES: O=C1C2=C(ON1)CNC([2H])([2H])C2([2H])[2H]
Biological Activity: THIP-d4 (Gaboxadol-d4) is the deuterium labeled THIP (HY-10232). THIP (Gaboxadol) is a selective extrasynaptic GABAA receptors (eGABARs) agonist (with blood-brain barrier permeability), shows an EC50 value of 13 μM for δ-GABAAR. THIP induces strong tense GABAA-mediated currents in layer 2/3 neurons, but shows on effect on miniature IPSCs. THIP can be used in studies of sleep disorders[1][2][3].
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THIP-d4 | THIP-d4 (Gaboxadol-d4) is the deuterium labeled THIP (HY-10232). THIP (Gaboxadol) is a selective extrasynaptic GABAA receptors (eGABARs) agonist (with blood-brain barrier permeability), shows an EC50 value of 13 μM for δ-GABAAR. THIP induces strong tense GABAA-mediated currents in layer 2/3 neurons, but shows on effect on miniature IPSCs. THIP can be used in studies of sleep disorders. | |||||||||||||||||||||
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THIP (Standard) | ≥98% | THIP (Standard) is the analytical standard of THIP. This product is intended for research and analytical applications. THIP (Gaboxadol) is a selective extrasynaptic GABAA receptors (eGABARs) agonist (with blood-brain barrier permeability), shows an EC50 value of 13 μM for δ-GABAAR. THIP induces strong tense GABAA-mediated currents in layer 2/3 neurons, but shows on effect on miniature IPSCs. THIP can be used in studies of sleep disorders. | ||||||||||||||||||||
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THIP | 99.89% | THIP (Gaboxadol) is a selective extrasynaptic GABAA receptors (eGABARs) agonist (with blood-brain barrier permeability), shows an EC50 value of 13 μM for δ-GABAAR. THIP induces strong tense GABAA-mediated currents in layer 2/3 neurons, but shows on effect on miniature IPSCs. THIP can be used in studies of sleep disorders. | ||||||||||||||||||||
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- [1]. Drasbek KR, et al. THIP, a hypnotic and antinociceptive drug, enhances an extrasynaptic GABAA receptor-mediated conductance in mouse neocortex. Cereb Cortex. 2006 Aug;16(8):1134-41. [Content Brief]
- [2]. Larsen M, et al. 5-Hydroxy-L-tryptophan alters gaboxadol pharmacokinetics in rats: involvement of PAT1 and rOat1 in gaboxadol absorption and elimination. Eur J Pharm Sci. 2010 Jan 31;39(1-3):68-75. [Content Brief]
- [3]. Hoestgaard-Jensen K, et al. Probing α4βδ GABAA receptor heterogeneity: differential regional effects of a functionally selective α4β1δ/α4β3δ receptor agonist on tonic and phasic inhibition in rat brain. J Neurosci. 2014 Dec 3;34(49):16256-72. [Content Brief]
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