2,3-Butanedione monoxime
CAS : 57-71-6
Ref. 3D-FB32378
5g | 136,00 € | ||
1kg | 2.041,00 € | ||
50g | 352,00 € | ||
5kg | 5.681,00 € | ||
250g | 847,00 € |
Informations sur le produit
- Diacetylmonoxime
- (2E)-butane-2,3-dione oxime
- (2Z)-butane-2,3-dione oxime
- 2,3-Butadione monooxime
- 2,3-Butandionmonoxim
- 2,3-Butanedione 2-oxime
- 2,3-Butanedione 3-monoxime
- 2,3-Butanedione oxime
- 2,3-Butanedione, mono-oxime
- 2,3-Butanedione, monooxime
- Voir d'autres synonymes
- 2,3-Butanedione-2-monoxime
- 2,3-Butanodiona-Monoxima
- 2-Hydroxyimino-3-butanone
- 2-Oximino-3-butanone
- 3-(Hydroxyimino)-2-butanone
- 3-Oximino-2-butanone
- 3-Oxo-2-butanone oxime
- BDM
- Biacetyl monooxime
- Biacetyl monoxime
- Butane-2,3-Dione Oxime
- Butane-2,3-dione-monoxime
- DAM
- DAM (oxime)
- Diacetyl monooxime
- Diacetyl monoxime
- Diacetyl monoxime 95+ %
- Diacetyl-Monoxim
- Diacetylmonooxime
- Isonitrosoethyl Methyl Ketone
- Nsc 116103
- Nsc 660
- Ra 53
2,3-Butanedione monoxime (BDM) is a metabolite of the glycol ether, 2,3-butanedione. It has been shown to have a beneficial effect on metabolic disorders in rats by modulating several enzyme activities. The optimum concentration of BDM is 2 mmol/L. This compound has also been shown to inhibit the oxidation of xanthine oxidase and the formation of hydroxyl radicals in vitro. BDM has also been found to have synchronous fluorescence with papillary muscles from guinea pigs and cytosolic ca2+ levels in rat liver cells. The structure analysis revealed that BDM binds to the active site of the x-ray crystal structures for mitochondrial cytochrome C oxidase and cardiac ATP synthase with an affinity similar to that of CoQ10. The Langmuir adsorption isotherm for BDM was calculated as 0.913 +/- 0.034 cm/g at 20 degrees Celsius,
Propriétés chimiques
Question d’ordre technique sur : 3D-FB32378 2,3-Butanedione monoxime
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