Perspectives avancées

Nous fournissons des analyses plus avancées sur les interactions d'une molécule avec le métabolisme humain, les sites de liaison, etc.

Interaction de cette molécule avec le métabolisme

Nous utilisons un modèle d'apprentissage en profondeur pour prédire les interactions de cette molécule avec le métabolisme. Consultez la source pour comprendre la méthodologie.

Réactions qui métabolisent cette molécule
Hydroxylation of acyclic aliphatic secondary carbon BTMR1063
Reagents

Metabolite: InChI=1S/C22H27...

Hydroxylation of non-terminal aliphatic carbon adjacent to aromatic ring BTMR1077
Reagents

Metabolite: InChI=1S/C22H27...

Aromatic hydroxylation of fused benzene ring BTMR1030
Reagents

Metabolite: InChI=1S/C22H27...

Aromatic hydroxylation of fused benzene ring BTMR1030
Reagents

Metabolite: InChI=1S/C22H27...

O-Dealkylation BTMR0052
O-Dealkylation BTMR0052
Reagents

Metabolite: InChI=1S/C10H10...

N-Oxidation of alicyclic tertiary amine BTMR1099
Reagents

Metabolite: InChI=1S/C22H27...

N-Dealkylation of alicyclic tertiary amine BTMR1144
Reagents
N-Dealkylation of alicyclic tertiary amine BTMR1144
Reagents

Metabolite: InChI=1S/C17H16...

Hydroxylation of benzene on carbon ortho to electron donating group BTMR1045
Reagents

Metabolite: InChI=1S/C22H27...

Hydroxylation of benzene on carbon ortho to electron donating group BTMR1045
Reagents

Metabolite: InChI=1S/C22H27...

Hydroxylation of heteroalicyclic secondary carbon BTMR1070
Reagents

Metabolite: InChI=1S/C22H27...

Hydroxylation of heteroalicyclic secondary carbon BTMR1071
Enzymes: CYP1A2
Reagents

Metabolite: InChI=1S/C22H27...

Formation of imminium ion from N-substituted piperidine BTMR1187
Enzymes: CYP2C19 CYP3A4
Reagents

Metabolite: InChI=1S/C22H26...

Ring opening of N-substituted piperidine BTMR1188
Enzymes: CYP3A4
Reagents

Metabolite: InChI=1S/C22H27...