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1 iHPODE) and 10,13-dihydroperoxyoctadeca-8,11-dienoic acid (10,13-diHPODE), were postulated as key int
2 ron reduced product, 10-hydroxyoctadeca-8,12-dienoic acid (10-OH-18:2), as well as the one-electron r
3 vestigated using 10-hydroperoxyoctadeca-8,12-dienoic acid (10-OOH-18:2), a diagnostic probe of hydrop
4 tron reduction products, 10-oxooctadeca-8,12 dienoic acid (10-oxo-18:2) and 10-oxodec-8-enoic acid (1
5 atty acid, (10E,12E)-11-methyloctadeca-10,12-dienoic acid (11Me-10t,12t-18:2), produced from (11E)-me
6 tatively identified as 12-epoxyoctadeca-9,15-dienoic acid (12-epoxy-18:2Delta(9,15)) in cultures supp
7 ts in equal amounts: 13-hydroxyoctadeca-8,12-dienoic acid (13-OH-18:2) and the keto fatty acid 13-oxo
8  of Mn-PGHS with 13-hydroperoxyoctadeca-8,12-dienoic acid (13-OOH-18:2) generated two products in equ
9  and the keto fatty acid 13-oxooctadeca-8,12-dienoic acid (13-oxo-18:2).
10 using 15-HETE or 20-hydroxyeicosa-6(Z),15(Z)-dienoic acid (20-HEDE), attenuated autoregulation of CBF
11 operoxides, 9,12-dihydroperoxyoctadeca-10,13-dienoic acid (9,12-diHPODE) and 10,13-dihydroperoxyoctad
12  hydrolyzes 2-hydroxy-6-oxo-6-phenylhexa-2,4-dienoic acid (HOPDA) to 2-hydroxypenta-2,4-dienoic acid
13 2,3-DHB) to 2-hydroxy-6-oxo-6-phenylhexa-2,4-dienoic acid (HOPDA), a BphD substrate, which was subseq
14 drolysis of 2-hydroxy-6-oxo-6-phenylhexa-2,4-dienoic acid (HOPDA), in which the substrate is subject
15  metabolite 2-hydroxy-6-oxo-6-phenylhexa-2,4-dienoic acid (HOPDA).
16 4-dienoic acid (HOPDA) to 2-hydroxypenta-2,4-dienoic acid (HPD) and benzoate.
17 15S)-hydroxy-9, 11-epoxymethanoprosta-5Z,13E-dienoic acid (U46619), also causes platelet aggregation
18 20-HETE agonist, 20-hydroxyeicosa-6(Z) 15(Z)-dienoic acid (WIT003) induced mitogenesis in HUVECs and
19  the transformation of cyclopentanone to the dienoic acid 1, as published in this journal, is reveale
20 st catalytic desymmetrization of a prochiral dienoic acid by enantioselective bromolactonization.
21 xy-3-methoxyphenyl)acryloyl]-5 -oxohepta-4,6-dienoic acid ethyl ester], 23 [7-(4-hydroxy-3-methoxyphe
22 3,4-dihydroxyphenyl)-4-hydroxy-2-oxohexa-3,5-dienoic acid form as the light emitter (fluorescent stat
23 ubstrate analog 13(S)-hydroxyoctadeca-9Z,11E-dienoic acid have been determined.
24 ar, compound 13e featuring a phenylpenta-2,4-dienoic acid substituent was shown to be antiproliferati
25 mon 12,15-epoxy-13,14-dimethylnonadeca-12,14-dienoic acid with even-numbered alkyl moiety.
26 ) and densipolic (12-hydroxyoctadec-cis-9,15-dienoic acid) acids.
27 omerization of sorbic acid ((2E,4E)-hexa-2,4-dienoic acid) and singlet oxygen formation to quantify t
28 hoxy-2,6,8-trimethyl-10-phenyldeca-4(E),6(E)-dienoic acid) present in all MCs/Nod.
29 cid), 9S,12S,13S-trihydroxy-octadeca-10E,15Z-dienoic acid, 8R*,9R*,10S*-trihydroxy-octadec-6Z-enoic a
30  in a total synthesis of 13-oxotridec-9E,11E-dienoic acid, confirming the identity of this product th
31 oxy-3-methoxyphenyl)acryloyl]5- oxohepta-4,6-dienoic acid], and 39 [bis(3,4-dimethoxyphenyl)-1,3-prop
32 lective photodimerization of 5-arylpenta-2,4-dienoic acids (i.e., vinylogous cinnamic acids).
33 lefins so that irradiation of template-bound dienoic acids gives mono [2 + 2] cycloaddition products
34 ecarboxylative cross-coupling of various 2,4-dienoic acids with diverse (hetero)aryl halides, such as
35                                              Dienoic eicosanoids derived from phospholipid arachidoni
36     Furthermore, the levels of cytokines and dienoic eicosanoids produced in response to an intraperi
37 , decrease the production of proinflammatory dienoic eicosanoids with a concomitant increase in the s
38 o the conjugated dibromodiene 5b [5'(E)] and dienoic ester 7b [5'(E),7'(E)].
39 roM and cytostatic at > or =11 microM, while dienoic esters 16a,b showed activity against both varice
40  3-iodoacrylate gave stereodefined access to dienoic esters 7 (E,E) and 16 (E,Z).
41                       In addition to (2Z,4E)-dienoic esters, some (2Z,4E,6E)- and (2Z,4E,6Z)-trienoic
42 gest that oral exposure to the monoenoic and dienoic fatty acid component of dietary fat selectively
43 ARgamma activation observed for nitrated 1,4-dienoic fatty acids (E-9-NO2-18:2, E-10-NO2-18:2, E-12-N
44 sed a corresponding increase in the level of dienoic fatty acids.
45  several positional and geometric conjugated dienoic isomers of linoleic acid, which have been shown
46 n phospholipids due to reduced conversion of dienoic to trienoic fatty acids in the endoplasmic retic