The Chemical Backbone: Understanding Beta-D-Ribofuranose 1,2,3,5-tetraacetate in Pharmaceutical Synthesis
Beta-D-Ribofuranose 1,2,3,5-tetraacetate, identified by its CAS number 13035-61-5, is a compound of significant importance within the pharmaceutical industry, serving as a crucial intermediate in the synthesis of various therapeutic agents. NINGBO INNO PHARMCHEM CO.,LTD. specializes in providing high-quality fine chemicals and pharmaceutical intermediates, and this acetylated ribose derivative is a prime example of our commitment to supporting advanced chemical synthesis.
The molecular structure of Beta-D-Ribofuranose 1,2,3,5-tetraacetate (C13H18O9) is a tetra-acetylated form of D-ribofuranose. This structural modification is key to its utility. The acetyl groups effectively 'protect' the hydroxyl groups of the ribose molecule, preventing them from participating in unintended reactions during complex synthesis sequences. This protection is fundamental for achieving regioselectivity, ensuring that chemical reactions occur at the desired positions on the molecule. Furthermore, the acetyl groups enhance the compound's solubility in many organic solvents, which greatly simplifies handling and reaction setup in laboratory and industrial settings. Its appearance as a white to off-white crystalline powder makes it easy to weigh and measure accurately.
The most recognized application for Beta-D-Ribofuranose 1,2,3,5-tetraacetate is its critical role as an intermediate in the production of ribavirin, a broad-spectrum antiviral drug. The synthesis pathway to ribavirin often involves multiple steps, and the controlled reactivity provided by this tetraacetylated ribose is essential for success. Consequently, pharmaceutical manufacturers are keen to buy Beta-D-Ribofuranose 1,2,3,5-tetraacetate at competitive prices, often seeking out suppliers who can offer a reliable wholesale price. This intermediate is not just a raw material; it is a building block that directly impacts the efficiency and cost-effectiveness of manufacturing essential medicines.
Beyond its primary role in antiviral synthesis, Beta-D-Ribofuranose 1,2,3,5-tetraacetate is also a valuable compound for general carbohydrate chemistry research. It is employed in studies related to glycosylation, nucleoside synthesis, and the development of novel therapeutic compounds. The ability to precisely control reactions involving sugar moieties makes it an indispensable tool for academic and industrial research laboratories. The continuous demand for this pharmaceutical intermediate CAS 13035-61-5 highlights its foundational importance in chemical research and development.
NINGBO INNO PHARMCHEM CO.,LTD. prides itself on being a dependable source for high-quality Beta-D-Ribofuranose 1,2,3,5-tetraacetate. Our advanced production facilities and rigorous quality assurance protocols ensure that every batch meets the exacting standards required by the pharmaceutical industry. We are committed to supporting our clients by providing this essential acetylated ribose chemical, enabling them to advance their research and manufacturing goals efficiently and cost-effectively. For those seeking to procure this vital intermediate, understanding the market and partnering with a reputable supplier like NINGBO INNO PHARMCHEM CO.,LTD. is paramount.
Perspectives & Insights
Alpha Spark Labs
“specializes in providing high-quality fine chemicals and pharmaceutical intermediates, and this acetylated ribose derivative is a prime example of our commitment to supporting advanced chemical synthesis.”
Future Pioneer 88
“The molecular structure of Beta-D-Ribofuranose 1,2,3,5-tetraacetate (C13H18O9) is a tetra-acetylated form of D-ribofuranose.”
Core Explorer Pro
“The acetyl groups effectively 'protect' the hydroxyl groups of the ribose molecule, preventing them from participating in unintended reactions during complex synthesis sequences.”