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H145

(±)-7-hydroxy-dpat hydrobromide

Synonym(s):

(±)-2-Dipropylamino-7-hydroxy-1,2,3,4-tetrahydronaphthalene hydrobromide

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About This Item

Empirical Formula (Hill Notation):
C16H25NO · HBr
CAS Number:
Molecular Weight:
328.29
MDL number:
UNSPSC Code:
12352200

SMILES string

Br.CCCN(CCC)C1CCc2ccc(O)cc2C1

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Product No.
Description
Pricing

Storage Class Code

13 - Non Combustible Solids

WGK

WGK 3

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable

Personal Protective Equipment

dust mask type N95 (US), Eyeshields, Gloves

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Eriko Ikeda et al.
Molecular pharmacology, 83(5), 959-967 (2013-02-23)
The dopamine D3 receptor (DRD3) in the ventral striatum is thought to influence motivation and motor functions. Although the expression of DRD3 in the ventral striatum has been shown to exhibit 24-hour variations, the mechanisms underlying the variation remain obscure.
Y Iris Chen et al.
The European journal of neuroscience, 34(5), 800-815 (2011-09-08)
Chronic use of cocaine is associated with lasting alterations in brain metabolism, circuitry, and receptor properties. We used neuroimaging with pharmacological magnetic resonance imaging to assess alterations in response to cocaine (0.5 mg/kg) in animals trained to self-administer cocaine on
Mikhail N Koffarnus et al.
Psychopharmacology, 203(2), 317-327 (2008-09-23)
Previous research has found the stimulus effects of dopamine D2- and D3-preferring agonists difficult to distinguish in drug discrimination studies. Antagonism studies suggest that the stimulus effects of both types of agonists may be mediated primarily through D2 receptors. The
Gavin D Phillips et al.
Psychopharmacology, 203(1), 161-173 (2008-10-25)
Two issues were addressed regarding the effects of amygdala dopamine manipulations on associative learning: first, an apparent contradiction between the effects of post- vs. pre-session dopaminergic manipulations and second, the ability of dopaminergic infusions to affect association formation vs. its
Rosario Sánchez-Pernaute et al.
Neurobiology of disease, 27(2), 220-227 (2007-06-26)
A growing body of evidence indicates a role for D(3) receptors in l-DOPA-induced dyskinesias. This involvement could be amenable to non-invasive in vivo analysis using functional neuroimaging. With this goal, we examined the hemodynamic response to the dopamine D(3)-preferring agonist

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