The product, High Quality 2′,3′-Di-O-acetyl-5′-deoxy-5-fuluro-D-cytidine with CAS number 161599-46-8, is a compound that has gained significant attention in the relevant scientific and industrial fields. The CAS number serves as a unique identifier for this specific chemical compound, ensuring accurate referencing and identification in chemical databases and research literature.
This product is described as high - quality, which implies strict manufacturing processes and quality control measures have been implemented to meet certain standards. As for its price, it is stated to be offered at a good price, making it an attractive option for various users.
2′,3′-Di-O-acetyl-5′-deoxy-5-fuluro-D-cytidine may have multiple applications. In the pharmaceutical research area, it can be used as a key intermediate in the synthesis of certain drugs. It might play a role in the development of new anti - cancer drugs, as the structure of the compound may have potential to interact with cancer cells in a specific way. Additionally, it could be used in biological research to study the function of certain enzymes or biological pathways.
In the chemical industry, it can be utilized as a building block for the synthesis of more complex organic compounds. Its unique chemical structure allows it to participate in various chemical reactions, leading to the creation of novel substances with different properties and functions.
When handling this product, it is crucial to follow strict safety protocols. First, users should wear appropriate personal protective equipment (PPE), such as gloves, safety goggles, and a lab coat. The product should be stored in a cool, dry place away from direct sunlight and sources of heat.
For laboratory use, accurate measurement of the compound is essential. Use calibrated measuring instruments to ensure the correct amount is used in experiments. When dissolving the product, choose an appropriate solvent based on its solubility properties. Stirring or gentle heating may be required to ensure complete dissolution, but this should be done carefully to avoid any potential chemical reactions or decomposition.
Case 1: Pharmaceutical Research
In a recent pharmaceutical research project, a team of scientists used 2′,3′-Di-O-acetyl-5′-deoxy-5-fuluro-D-cytidine as an intermediate in the synthesis of a new anti - cancer drug. They started by reacting the compound with a specific reagent under controlled temperature and pressure conditions. After several purification steps, they obtained a promising compound with strong anti - cancer activity in in - vitro tests. This case shows the potential of this product in the development of new and effective drugs.
Case 2: Chemical Synthesis
A chemical synthesis company utilized this compound as a building block to create a new type of organic polymer. By carefully designing a reaction scheme, they were able to incorporate the compound into the polymer structure, resulting in a polymer with improved mechanical and chemical properties. This new polymer has potential applications in the materials science field, such as in the production of high - performance plastics.
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