- Saccharides
- Monosaccharides
- Ketose
Ketose
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Ketose (40)
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- Formula: C6H10O7
- Molecular Weight: 194.14
2-keto-D-Gluconic acid is a key precursor for synthesising vitamin C (HY-B0166) and isovitamin C.
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- Formula: C7H14O7
- Molecular Weight: 210.18
Sedoheptulose is a heptulose. Sedoheptulose, in the form of phosphate esters, functions as a metabolic intermediate in the pentose phosphate pathway. Sedoheptulose serves as a starting material for the chemical synthesis of pseudoaminosugars and chiral substituted furans.
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- Formula: C7H15O10P
- Molecular Weight: 290.16
D-Sedoheptulose 7-phosphate is a common precursor for the heptoses of septacidin (group III) and hygromycin B (group IV). D-Sedoheptulose 7-phosphate can be converted to NDP-heptoses through similar biosynthetic pathways in those compounds .
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- Formula: C6H12O6
- Molecular Weight: 180.16
L-(+)-Fructose, 95% (L-arabino-2-Hexulose, 95%) is the L-isomer of D-Fructose (HY-N7092). L-(+)-Fructose, 95% participates in glycolysis and gluconeogenesis, and can be used to study photosynthesis and carbohydrate storage in plant biology. L-(+)-Fructose, 95% is applicable for investigating the activity of fructokinase and other fructose-metabolizing enzymes.
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- Formula: C5H10O5
- Molecular Weight: 150.13
D-Ribulose (1 M in water) is a pentose sugar, a key intermediate in the Calvin cycle, and a substrate for pentose isomerase and ribulokinase. D-Ribulose (1 M in water) can be enzymatically converted to D-arabinose by pentose isomerase; it undergoes a two-step oxidation by cells of Acetobacter suboxydans. D-Ribulose (1 M in water) can be used in metabolism-related research.
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- Formula: C6H13O9P
- Molecular Weight: 260.14
D-Fructose 1-phosphate is a key intermediate metabolite in the fructose metabolic pathway. As a key signaling molecule linking fructose metabolism and glucose metabolic regulation, D-Fructose 1-phosphate acts as an allosteric modulator to counteract the inhibitory effect of the glucokinase-regulatory protein complex, thereby finely regulating the direction of hepatic glucose metabolism at the substrate level.
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- Formula: C6H10Ca2O12P2
- Molecular Weight: 416.24
Calcium fructose diphosphate (Dicalcium 1,6-di-O-phosphonato-L-tagatose) is a crucial intermediate in the glycolysis process and is closely related to ATP synthesis. Calcium fructose diphosphate can be used to regulate calcium and phosphorus balance, protect myocardial tissue from ischemia/reperfusion injury, counteract the effects of alcohol, and serve as a safer source of phosphate in parenteral nutrition.
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- Formula: C35H34O6
- Molecular Weight: 550.64
Benzyl 2,3-O-Isopropylidene-6-O-trityl-5-keto-α-D-mannofuranose is a class of biochemical reagents used in glycobiology research. Glycobiology studies the structure, synthesis, biology, and evolution of sugars. It involves carbohydrate chemistry, enzymology of glycan formation and degradation, protein-glycan recognition, and the role of glycans in biological systems. This field is closely related to basic research, biomedicine, and biotechnology.
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- Formula: C6H11FO5
- Molecular Weight: 182.15
3-Deoxy-3-fluoro-D-mannose is a class of biochemical reagents used in glycobiology research. Glycobiology studies the structure, synthesis, biology, and evolution of sugars. It involves carbohydrate chemistry, enzymology of glycan formation and degradation, protein-glycan recognition, and the role of glycans in biological systems. This field is closely related to basic research, biomedicine, and biotechnology.
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- Formula: C14H19FO9
- Molecular Weight: 350.29
Acetofluoro-α-D-mannose is a class of biochemical reagents used in glycobiology research. Glycobiology studies the structure, synthesis, biology, and evolution of sugars. It involves carbohydrate chemistry, enzymology of glycan formation and degradation, protein-glycan recognition, and the role of glycans in biological systems. This field is closely related to basic research, biomedicine, and biotechnology.
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- Formula: C20H22N4O5
- Molecular Weight: 398.41
3-Deoxy-D-erythro-hexos-2-ulose bis(2-benzoylhydrazone) is a class of biochemical reagents used in glycobiology research. Glycobiology studies the structure, synthesis, biology, and evolution of sugars. It involves carbohydrate chemistry, enzymology of glycan formation and degradation, protein-glycan recognition, and the role of glycans in biological systems. This field is closely related to basic research, biomedicine, and biotechnology.
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- Formula: C6H11FO5
- Molecular Weight: 182.15
4-Deoxy-4-fluoro-D-mannose is a class of biochemical reagents used in glycobiology research. Glycobiology studies the structure, synthesis, biology, and evolution of sugars. It involves carbohydrate chemistry, enzymology of glycan formation and degradation, protein-glycan recognition, and the role of glycans in biological systems. This field is closely related to basic research, biomedicine, and biotechnology.
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- Formula: C6H10O7.1/2Ca
- Molecular Weight: 214.18
2-Keto-d-gluconic acid (hemicalcium monohydrate) is a biochemical assay reagent.
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- Formula: C8H14O6
- Molecular Weight: 206.19
Ethyl β-D-ribo-hexopyranosid-3-ulose (Compound 2) is a natural product that can be isolated from Coleus forskohlii.
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- Formula: C6H10O6
- Molecular Weight: 178.14
1L-epi-2-Inosose is a biochemical reagent that can be used as a biological material or organic compound for life science related research.
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- Formula: C6H12O6
- Molecular Weight: 180.16
L-Psicose is a biochemical reagent that can be used as a biological material or organic compound for life science related research.
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- Formula: C6H13O9P
- Molecular Weight: 260.14
D-Fructose 6-phosphate is an endogenous metabolite. D-Fructose 6-phosphate can be obtained by hydrolysis of Fructose-1,6-bisphosphatase (FBPase). D-Fructose-6-phosphate is a sugar intermediate in the glycolysis pathway and the pentose phosphate pathway. D-Fructose-6-phosphate can be used to detect glucosamine-6-phosphate synthase and TAL activities. D-Fructose 6-phosphate can be used to study Lewy body dementia.
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