High-Purity 1,2,3,5-Tetra-O-acetyl β-L-Ribofuranose for Pharmaceutical Synthesis
Unlock advanced pharmaceutical synthesis with this crucial acetylated ribofuranose intermediate.
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1,2,3,5-Tetra-O-acetyl-beta-L-Ribofuranose
This high-quality chemical intermediate, identified by CAS 144490-03-9, is essential for researchers and manufacturers in the pharmaceutical industry. Its precise chemical structure and properties make it a valuable building block for creating novel therapeutic compounds, particularly in the field of nucleoside analog synthesis.
- Explore the chemical synthesis of nucleoside analogs using this specialized intermediate.
- Leverage the high purity of this acetylated ribofuranose for reliable and reproducible research outcomes.
- Acquire the vital building block for API synthesis with our dependable sourcing of CAS 144490-03-9.
- Understand the importance of carbohydrate chemistry in drug development with this versatile compound.
Key Advantages
Exceptional Purity
Ensure the integrity of your synthesis processes by utilizing a product with guaranteed high purity, crucial for accurate acetylated ribofuranose pharmaceutical intermediate applications.
Versatile Applications
This compound serves as a foundational element for advanced projects, including the buy CAS 144490-03-9 pharmaceutical grade requirements in drug discovery.
Reliable Sourcing
Benefit from a consistent supply chain for your critical research needs, making it easier to buy 1,2,3,5-Tetra-O-acetyl-beta-L-Ribofuranose CAS 144490-03-9.
Key Applications
Pharmaceutical Synthesis
A critical component in the chemical synthesis of nucleoside analogs and other complex pharmaceutical molecules.
Drug Discovery Research
Enables the exploration of new therapeutic agents through innovative acetylated ribofuranose pharmaceutical intermediate use.
Organic Chemistry
Provides a fundamental building block for various organic synthesis pathways, supporting the development of new compounds.
Biotechnology
Supports advanced research in areas requiring specialized carbohydrate derivatives for biological applications.