Product Description
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Quality Standard
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Enterprise standard
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Properties
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A white crystalline powder.
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Uses
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It is an intermediate for topiramate.
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Storage
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It should be kept in cool and dry place, and away from light; stored in sealed containers.
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Packing
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1kg/ package, 25kg/ package.
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AI Product Description
*The following content is generated by AI and is for reference only.
Diacetone fructose, chemically known as 1,2:5,6-di-O-isopropylidene-D-fructose, is a valuable protected sugar derivative widely utilized in organic synthesis and pharmaceutical research. With the molecular formula C12H20O6 and a CAS registry number of 14378-89-7, this compound serves as a critical intermediate for constructing complex carbohydrate structures. The molecule features two acetonide protecting groups that shield the hydroxyl functionalities at positions 1,2 and 5,6 of the fructose backbone, thereby preventing unwanted side reactions during multi-step synthetic sequences. This protection strategy allows chemists to selectively modify other parts of the sugar molecule with high precision.
Primarily employed in the field of medicinal chemistry, diacetone fructose acts as a building block for synthesizing novel nucleoside analogs, which are essential components in antiviral and anticancer drug development. Its stability under various reaction conditions makes it ideal for glycosylation reactions, where specific stereochemistry must be maintained. Furthermore, researchers utilize this reagent to study enzyme-substrate interactions and metabolic pathways involving hexose sugars. The compound is typically available as a white crystalline powder or solid, exhibiting good solubility in common organic solvents such as dichloromethane, ethyl acetate, and acetone, while remaining insoluble in water.
In industrial applications, while not a bulk commodity chemical, its niche role in fine chemical production remains significant. Manufacturers often source diacetone fructose from specialized chemical suppliers who adhere to strict quality control standards to ensure purity levels suitable for laboratory and pilot-scale experiments. Safety data indicates that standard precautions should be taken when handling the substance, including the use of personal protective equipment to avoid skin contact or inhalation of dust. As the demand for targeted therapies grows, the utility of protected sugar derivatives like diacetone fructose continues to expand, facilitating advancements in biotechnology and pharmacological innovation. Researchers rely on its unique structural properties to unlock new possibilities in designing effective therapeutic agents with improved bioavailability and reduced toxicity profiles.