| Identification | Back Directory | [Name]
Dihydroxyacetonedimer | [CAS]
23147-59-3 | [Synonyms]
NSC 72202 DL-Glyceraldehyde, dimer 95% DL-Glyceraldehyde (Dimer) 93+% DL-Glyceraldehyde (Dimer), 95.0%+ 1,4-Dioxane-2,5-dimethanol, 3,6-dihydroxy- 3,6-bis(hydroxyMethyl)-1,4-dioxane-2,5-diol | [Molecular Formula]
C6H12O6 | [MDL Number]
MFCD00070528 | [MOL File]
23147-59-3.mol | [Molecular Weight]
180.16 |
| Chemical Properties | Back Directory | [Melting point ]
144-145°C (lit.) | [Boiling point ]
469.3±45.0 °C(Predicted) | [density ]
1.505±0.06 g/cm3(Predicted) | [storage temp. ]
2-8°C | [form ]
crystalline powder | [pka]
11.60±0.70(Predicted) | [color ]
White | [InChI]
1S/2C3H6O3/c2*4-1-3(6)2-5/h2*1,3,5-6H,2H2 | [InChIKey]
NGNVWCSFFIVLAR-UHFFFAOYSA-N | [SMILES]
OC[C@H]1O[C@@H](O)[C@H](CO)O[C@@H]1O |
| Hazard Information | Back Directory | [Uses]
- Aldehyde Reductase Activity: The enzymatic properties of DL-Glyceraldehyde dimer were examined in the context of aldehyde reductases from Euonymus japonica leaves, providing insights into the reduction processes of aldose sugars, which are significant for understanding stress responses in plants (Negm, 1986).
- Enzymatic Reductase Functions: DL-Glyceraldehyde dimer was studied in the purification and characterization of human liver aldehyde reductases, focusing on its role in metabolic detoxification, crucial for pharmaceutical applications involving drug metabolism and toxicity (Petrash and Srivastava, 1982).
- Protozoan Metabolic Pathways: The enzymatic characterization of aldehyde reductase from Crithidia fasciculata, with DL-Glyceraldehyde dimer as a substrate, provided insights into the metabolic pathways of protozoans, important for developing treatments against parasitic infections (Kobayashi, 1982).
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Energy Chemical
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Sigma-Aldrich
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Merck KGaA
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