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BiohacksAI

Evidence-Based Biohacking

Patent Pending

Biosynthesis of electrophilic ω-3 PUFA oxo-derivatives

REACTOME PATHWAY
Reactome: R-HSA-90276042 genes59 compounds

The Biosynthesis of electrophilic ω-3 PUFA oxo-derivatives pathway (Reactome ID: R-HSA-9027604) involves 2 genes and is affected by 59 compounds in the BiohacksAI evidence corpus. Compound-pathway associations are derived from target overlap: a compound is linked to this pathway if it targets ≥2 genes within the pathway.

Genes in this Pathway

ALOX5PTGS2

Compounds Affecting Biosynthesis of electrophilic ω-3 PUFA oxo-derivatives

#CompoundTargets HitStudies
1Celecoxib295
2Indomethacin297
3Resveratrol298
4pterostilbene299
5Quercetin300
6butein158
7ns398116
8Meloxicam299
9Naproxen1,000
10Etodolac296
11sulindac sulfide79
12Arachidonic Acid245
13aphs7
14Oxaprozin181
15sc56013
16Apigenin 5,7,4'-trihydroxy-flavone,300
17cbd298
18Acetaminophen Analgesic antipyretic derivative of acetanilide. It has weak anti-inflammatory properties and is used as1,000
19Ursolic Acid300
20Acetaminophen Analgesic antipyretic derivative of acetanilide. It has weak anti-inflammatory properties and is used as293
21Acetylcysteine298
22Calcitriol300
23cannabidiol296
24Cephradine298
25Daunorubicin298
26Epinephrine299
27Ergotamine299
28Hesperidin300
29Indapamide299
30isoetharine112
31Lymecycline143
32Methyldopa297
33monorden8
34Niflumic Acid300
35Norepinephrine Precursor of epinephrine that is secreted by298
36Noscapine300
37Oxymetazoline298
38Oxymetholone298
39Phenylbutazone300
40Procarbazine299
41Rifaximin298
42Rolitetracycline166
43Sorafenib300
44Sulindac297
45Tigecycline299
46tiopronin299
47Tolmetin298
48Tripterygium300
49Troglitazone299
50trolox300

About the Biosynthesis of electrophilic ω-3 PUFA oxo-derivatives Pathway

The Biosynthesis of electrophilic ω-3 PUFA oxo-derivatives pathway is catalogued in Reactome (ID: R-HSA-9027604) and involves 2 genes. In the BiohacksAI corpus, 59 compounds have documented interactions with at least 2 genes in this pathway, establishing mechanistic relevance. Key pathway genes include ALOX5, PTGS2.