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BiohacksAI

Evidence-Based Biohacking

Patent Pending

Formation of axial mesoderm

REACTOME PATHWAY
Reactome: R-HSA-97962924 genes91 compounds

The Formation of axial mesoderm pathway (Reactome ID: R-HSA-9796292) involves 4 genes and is affected by 91 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

SMAD2SMAD3TEAD4YAP1

Compounds Affecting Formation of axial mesoderm

#CompoundTargets HitStudies
1cycloheximide300
2Azacitidine298
3Azacitidine300
4Colchicine300
5Dactinomycin297
6Podophyllotoxin14
7Daunorubicin298
8Emetine298
9Nocodazole Nocodazole is215
10Rotenone300
11Anisomycin247
12Disulfiram297
13Nisoldipine297
14Tubercidin300
15Apigenin 5,7,4'-trihydroxy-flavone,300
16Kaempferols300
17Quercetin300
18Danazol298
19Dasatinib299
20Dinitrochlorobenzene300
21Ethidium300
22Flutamide298
23Loratadine296
24Oxyphenbutazone300
25vinblastine sulfate81
26Vincristine299
27chrysin300
28egcg300
29Fluoxetine1,000
30Tannins Polyphenolic compounds with molecular weights of around 500-3000 daltons and containing enough hydroxyl groups (1-2 per 100 MW) for effective cross linking of other compounds (ASTRINGENTS).300
31Astemizole Antihistamine drug now withdrawn from280
32Bortezomib300
33Celecoxib295
34Ciclopirox88
35Cladribine297
36Digoxigenin 3 beta,12 beta,14-Trihydroxy-5 beta-card-20(22)-enolide.300
37Domperidone299
38Equilin216
39Ethinyl Estradiol300
40Ezetimibe296
41Idazoxan300
42Lynestrenol299
43Masoprocol300
44o-Phthalaldehyde300
45Perphenazine297
46pivampicillin275
47Promethazine121
48Salmeterol Xinafoate227
49Strophanthidin 3 beta,5,14-Trihydroxy-19-oxo-5 beta-card-20(22)-enolide.300
50Sulbactam299

About the Formation of axial mesoderm Pathway

The Formation of axial mesoderm pathway is catalogued in Reactome (ID: R-HSA-9796292) and involves 4 genes. In the BiohacksAI corpus, 91 compounds have documented interactions with at least 2 genes in this pathway, establishing mechanistic relevance. Key pathway genes include SMAD2, SMAD3, TEAD4, YAP1.