p-Hydroxynorephedrine

Chemical compound From Wikipedia, the free encyclopedia

p-Hydroxynorephedrine (PHN or 4-hydroxynorephedrine) is the para-hydroxy analog of norephedrine and an active sympathomimetic metabolite of amphetamine in humans.[1][2] When it occurs as a metabolite of amphetamine, it is produced from both p-hydroxyamphetamine and norephedrine.[2][3][4]

Other names4-Hydroxynorephedrine
para-Hydroxynorephedrine
CAS Number
Quick facts Clinical data, Other names ...
p-Hydroxynorephedrine
Clinical data
Other names4-Hydroxynorephedrine
para-Hydroxynorephedrine
Identifiers
  • 4-(2-amino-1-hydroxypropyl)phenol
CAS Number
PubChem CID
ChemSpider
UNII
Chemical and physical data
FormulaC9H13NO2
Molar mass167.208 g·mol−1
3D model (JSmol)
  • [C@@H]([C@H](C)N)(O)C1=CC=C(O)C=C1
  • InChI=1S/C9H13NO2/c1-6(10)9(12)7-2-4-8(11)5-3-7/h2-6,9,11-12H,10H2,1H3/t6-,9-/m0/s1
  • Key:JAYBQRKXEFDRER-RCOVLWMOSA-N
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Amphetamine metabolism

Metabolic pathways of amphetamine in humans[sources 1]
Graphic of several routes of amphetamine metabolism
Para-
Hydroxylation
Para-
Hydroxylation
Para-
Hydroxylation
unidentified
Beta-
Hydroxylation
Beta-
Hydroxylation
Oxidative
Deamination
Oxidation
unidentified
Glycine
Conjugation
The image above contains clickable links
In humans, para-hydroxynorephedrine is a metabolite of amphetamine. The aromatic ring hydroxylation of the substituted amphetamines in this image is mediated by CYP2D6 and dopamine β-hydroxylase.

Notes

  1. 4-Hydroxyamphetamine has been shown to be metabolized into 4-hydroxynorephedrine by dopamine beta-hydroxylase (DBH) in vitro and it is presumed to be metabolized similarly in vivo.[6][11] Evidence from studies that measured the effect of serum DBH concentrations on 4-hydroxyamphetamine metabolism in humans suggests that a different enzyme may mediate the conversion of 4-hydroxyamphetamine to 4-hydroxynorephedrine;[11][13] however, other evidence from animal studies suggests that this reaction is catalyzed by DBH in synaptic vesicles within noradrenergic neurons in the brain.[14][15]

See also

References

References

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