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eugenol

Structure via PubChem · Public domain (PubChem)

EntityQ423357· pop 37· linked from 360 articles

Also known as 4-allyl-2-methoxyphenol, 2-Hydroxy-5-allylanisole, 1,3,4-Eugenol, 4-Allylcatechol-2-methyl ether, p-Eugenol, p-Allylguaiacol, Eugenic acid, Caryophyllic acid

Eugenol is an allyl chain-substituted guaiacol, a member of the allylbenzene class of chemical compounds. It is a colorless to pale yellow, aromatic oily liquid extracted from certain essential oils especially from clove, nutmeg, cinnamon, basil and bay leaf. It is present in concentrations of 80–90% in clove bud oil and at 82–88% in clove leaf oil. Containing eugenol, clove essential oil is obtained from unopened clove buds. Eugenol has a pleasant, spicy, clove-like scent. The name is derived from Eugenia caryophyllata, the former Linnean nomenclature term for cloves. The currently accepted n

Chemical data

Formula
C10H12O2
Molecular weight
164.2 g/mol
IUPAC name
2-methoxy-4-prop-2-enylphenol
SMILES
COC1=C(C=CC(=C1)CC=C)O
InChIKey
RRAFCDWBNXTKKO-UHFFFAOYSA-N
XLogP
2
Polar surface area
29.5 Ų
H-bond donors
1
H-bond acceptors
2
Formal charge
0

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Wikidata facts

Mass
164.084
Show 5 more facts
Commons category
Eugenol
chemical formula
C₁₀H₁₂O₂
MCN code
2909.50.12
canonical SMILES
COC1=C(C=CC(=C1)CC=C)O
melting point
-10
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Article

11 sections
Contents
  • Biosynthesis
  • Pharmacology
  • Uses
  • Humans
  • Insects and fish
  • Other
  • Toxicity
  • As an allergenic
  • Natural occurrence
  • See also
  • References

Eugenol is an allyl chain-substituted guaiacol, a member of the allylbenzene class of chemical compounds. It is a colorless to pale yellow, aromatic oily liquid extracted from certain essential oils especially from clove, nutmeg, cinnamon, basil and bay leaf. It is present in concentrations of 80–90% in clove bud oil and at 82–88% in clove leaf oil. Containing eugenol, clove essential oil is obtained from unopened clove buds. Eugenol has a pleasant, spicy, clove-like scent. The name is derived from Eugenia caryophyllata, the former Linnean nomenclature term for cloves. The currently accepted name is Syzygium aromaticum.

==Biosynthesis== The biosynthesis of eugenol begins with the amino acid tyrosine. L-tyrosine is converted to p-coumaric acid by the enzyme tyrosine ammonia lyase (TAL). From here, p-coumaric acid is converted to caffeic acid by p-coumarate 3-hydroxylase using oxygen and NADPH. S-Adenosyl methionine (SAM) is then used to methylate caffeic acid, forming ferulic acid, which is in turn converted to feruloyl-CoA by the enzyme 4-hydroxycinnamoyl-CoA ligase (4CL). Next, feruloyl-CoA is reduced to coniferaldehyde by cinnamoyl-CoA reductase (CCR). Coniferaldeyhyde is then further reduced to coniferyl alcohol by cinnamyl-alcohol dehydrogenase (CAD) or sinapyl-alcohol dehydrogenase (SAD). Coniferyl alcohol is then converted to an ester in the presence of the substrate CH3COSCoA, forming coniferyl acetate. Finally, coniferyl acetate is converted to eugenol via the enzyme eugenol synthase 1 and the use of NADPH.

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