AJA0109A 5-CARBETHOXYURACIL industrial grade CAS Number 28485-17-8 Molecular Formula C5H4N2O4 Molecular Weight 156.1 Package:25kg/barrel Function: Reagent or intermediates Application: Reagent or intermediates Tags: Anti Tumor.
Application:Biochemical studies or intermediates.
Application:Biochemical studies or intermediates
Storage:-20℃。
Application:Biochemical studies or intermediates.
*The following content is generated by AI and is for reference only.
5-Carbethoxyuracil, chemically known as 5-ethoxycarbonyluracil, is a significant heterocyclic compound widely utilized in organic synthesis and pharmaceutical research. With the molecular formula C7H8N2O4 and a molecular weight of approximately 184.15 g/mol, this substance features a uracil core substituted with an ethoxycarbonyl group at the fifth position. Its primary CAS registry number is 630-92-8, which serves as its unique identifier for chemical databases and regulatory compliance globally. The compound appears as a crystalline solid, typically exhibiting high purity suitable for laboratory applications.
The principal application of 5-carbethoxyuracil lies in its role as a versatile synthetic intermediate. It is extensively employed in the preparation of various nucleoside analogs and pyrimidine derivatives, which are crucial precursors in the development of antiviral and anticancer agents. The presence of the ester functionality allows for diverse chemical transformations, including hydrolysis to yield carboxylic acid derivatives or reduction to form corresponding alcohols. Researchers frequently utilize it to synthesize modified nucleobases that exhibit enhanced biological activity or improved pharmacokinetic properties compared to natural uracil. Furthermore, due to its structural similarity to thymine and uracil, it serves as a valuable tool in mechanistic studies regarding DNA replication and enzyme inhibition.
In industrial settings, this compound is handled with standard laboratory safety precautions, as with most organic intermediates. While not a direct therapeutic agent itself, its contribution to the pipeline of drug discovery is substantial. Chemists value its stability and reactivity profile, making it an essential building block for constructing complex heterocyclic architectures. As the demand for novel nucleic acid therapeutics grows, the utility of 5-carbethoxyuracil in facilitating the synthesis of these advanced molecules remains paramount. It continues to be a staple reagent in medicinal chemistry laboratories focused on nucleoside chemistry, supporting ongoing efforts to combat viral infections and malignancies through innovative molecular design.