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8,5′-Diferulic acid
Names
Preferred IUPAC name
(2E )-2-{5-[(E )-2-Carboxyethen-1-yl]-2-hydroxy-3-methoxyphenyl}-3-(4-hydroxy-3-methoxyphenyl)prop-2-enoic acid
Other names
8,5′-DiFA Ferulic acid 8-5-dehydrodimer 8,5′-diFA (open form) 8,5-DiFA 5-8′-Dehydrodiferulic acid
Identifiers
ChEBI
ChemSpider
InChI=1S/C20H18O8/c1-27-16-9-11(3-5-15(16)21)8-14(20(25)26)13-7-12(4-6-18(22)23)10-17(28-2)19(13)24/h3-10,21,24H,1-2H3,(H,22,23)(H,25,26)/b6-4+,14-8+
Key: DEPVSDIYICBTJE-SITOFEAGSA-N
InChI=1/C20H18O8/c1-27-16-9-11(3-5-15(16)21)8-14(20(25)26)13-7-12(4-6-18(22)23)10-17(28-2)19(13)24/h3-10,21,24H,1-2H3,(H,22,23)(H,25,26)/b6-4+,14-8+
Key: DEPVSDIYICBTJE-SITOFEAGBF
Properties
C 20 H 18 O 8
Molar mass
386.356 g·mol−1
Except where otherwise noted, data are given for materials in their
standard state (at 25 °C [77 °F], 100 kPa).
Chemical compound
8,5′-Diferulic acid is a non cyclic type of
maize bran
[4] and
rye .
[5] 8,5′-Diferulic acid has also been identified to be covalently linked to carbohydrate moieties of the arabinogalactan-protein fraction of
gum arabic .
[6]
See also
References
External links
Aglycones
Precursor Monohydroxycinnamic acids (Coumaric acids) Dihydroxycinnamic acids Trihydroxycinnamic acids O -methylated formsothers
Esters
glycoside-likes
Esters of caffeic acid with cyclitols
Glycosides
Tartaric acid estersOther esters with caffeic acid Caffeoyl phenylethanoid glycoside (CPG)
Echinacoside
Calceolarioside A , B , C , F
Chiritoside A , B , C
Cistanoside A , B , C , D , E , F , G , H
Conandroside
Myconoside
Pauoifloside
Plantainoside A
Plantamajoside
Tubuloside B
Verbascoside (Isoverbascoside , 2′-Acetylverbascoside )
Oligomeric forms
Conjugates withcoenzyme A (CoA)