High-Quality 1-O-Acetyl-2,3,5-tri-O-benzoyl-β-D-ribofuranose (CAS: 6974-32-9) - Your Trusted Pharmaceutical Intermediate Manufacturer

Discover the critical pharmaceutical intermediate, 1-O-Acetyl-2,3,5-tri-O-benzoyl-β-D-ribofuranose (CAS: 6974-32-9). As a leading manufacturer and supplier in China, we provide high-purity products essential for the synthesis of vital antiviral and anti-tumor nucleoside drugs. Partner with us for reliable supply and competitive pricing.

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Advantages of Partnering with Our Chemical Supply

Consistent Supply & Quality

Leverage our robust manufacturing capabilities as a leading supplier in China to ensure a steady and dependable supply of 1-O-Acetyl-2,3,5-tri-O-benzoyl-β-D-ribofuranose. We prioritize quality control at every stage, guaranteeing product consistency for your critical synthesis processes.

Competitive Pharmaceutical Intermediate Pricing

We offer cost-effective solutions for your raw material procurement. As a direct manufacturer, we provide competitive pricing on CAS 6974-32-9, enabling better cost management for your R&D and production efforts.

Expertise in Nucleoside Synthesis Intermediates

Our deep understanding of pharmaceutical intermediates, particularly in nucleoside synthesis, makes us an ideal partner. We can provide technical support and ensure the suitability of our 1-O-Acetyl-2,3,5-tri-O-benzoyl-β-D-ribofuranose for your specific applications.

Applications in Pharmaceutical Development

Nucleoside Synthesis

The primary application of 1-O-Acetyl-2,3,5-tri-O-benzoyl-β-D-ribofuranose is as a key intermediate in the synthesis of various nucleosides and their derivatives, crucial for drug discovery.

Antiviral Drug Development

It serves as a vital building block in the preparation of nucleoside-based antiviral drugs, contributing to treatments for viral infections.

Anti-Tumor Therapies

This compound is instrumental in the synthesis of anti-tumor nucleoside analogs, supporting the development of cancer treatments.

Carbohydrate Chemistry Research

Its specific structure makes it valuable in carbohydrate chemistry research, particularly for modifying sugar backbones and developing novel compounds.