B

BiohacksAI

Evidence-Based Biohacking

Patent Pending

Oxidative Stress Induced Senescence

REACTOME PATHWAY
Reactome: R-HSA-255958026 genes250 compounds

The Oxidative Stress Induced Senescence pathway (Reactome ID: R-HSA-2559580) involves 26 genes and is affected by 250 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

CDK4CDK6EEDEZH2FOSIFNB1JUNKDM6BMAP2K3MAP2K4MAP3K5MAP4K4MAPK1MAPK10MAPK11MAPK14MAPK3MAPK8MAPK9MAPKAPK2MAPKAPK5MDM2MDM4MINK1TNIKTP53

Compounds Affecting Oxidative Stress Induced Senescence

#CompoundTargets HitStudies
1sp600125117
2Sorafenib300
3Anisomycin247
4Axitinib298
5withaferin300
6Afatinib297
7Methylene Blue200
8Quercetin300
9Sertraline1,000
10Dasatinib299
11fisetin78
12isorhamnetin-3-O-beta-D-glucopyranosyl-(1-3)-alpha-L-rhamnopyranosyl-(1-6)-beta-D-galactopyranoside [Supplementary Concept] from300
13Azacitidine298
14Azacitidine300
15cycloheximide300
16Thioridazine35
17vinblastine sulfate81
18Digoxin299
19Nisoldipine297
20Nocodazole Nocodazole is215
21Oxyphenbutazone300
22Astemizole Antihistamine drug now withdrawn from280
23Colchicine300
24Calcimycin216
25cardamonin180
26alsterpaullone12
27Hexachlorophene300
28Cladribine297
29Apigenin 5,7,4'-trihydroxy-flavone,300
30Cytarabine297
31Melphalan300
32Niclosamide299
33Methotrexate289
34Disulfiram297
35Trifluridine295
36plumbagin [Supplementary Concept]300
37Genistein300
38Ciclopirox88
39Dinitrochlorobenzene300
40Mycophenolic Acid Compound derived from Penicillium stoloniferum and related species. It blocks de novo biosynthesis of purine nucleotides by inhibition of300
41Vorinostat299
42Clotrimazole296
43Spironolactone298
44pd980597
45rafoxanide172
46triolimus [Supplementary Concept]33
47Chlorhexidine299
48Demecolcine246
49tyrphostin 92
50egcg300

About the Oxidative Stress Induced Senescence Pathway

The Oxidative Stress Induced Senescence pathway is catalogued in Reactome (ID: R-HSA-2559580) and involves 26 genes. In the BiohacksAI corpus, 250 compounds have documented interactions with at least 2 genes in this pathway, establishing mechanistic relevance. Key pathway genes include CDK4, CDK6, EED, EZH2, FOS.