2,3,4,6-Tetra-O-benzyl-D-glucopyranose: Your Key Intermediate for Pharmaceutical Synthesis

Discover the utility of 2,3,4,6-Tetra-O-benzyl-D-glucopyranose (CAS 4132-28-9), a vital protected monosaccharide derivative. Explore its applications in cutting-edge pharmaceutical development, advanced organic synthesis, and the intricate field of carbohydrate chemistry. Learn how to source this high-purity intermediate from trusted suppliers in China.

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Why Choose Our Tetra-O-benzyl-D-glucopyranose?

Exceptional Purity for Demanding Applications

Our product boasts a minimum purity of 98% (HPLC), ensuring reproducible results in sensitive pharmaceutical synthesis and biochemical research. This high purity is critical when purchasing intermediates for drug development.

Versatile Pharmaceutical Intermediate

This compound is a cornerstone in the synthesis of derivatives for treating diseases like Alzheimer's, diabetes, and cancer, making it a highly sought-after pharmaceutical intermediate in the global market. We provide detailed specifications to support your research.

Expert Sourcing and Customization

As a dedicated supplier of organic intermediates, we understand the critical needs of the pharmaceutical and biochemical industries. We offer competitive prices and flexible packaging options to meet your specific project requirements. Inquire about bulk purchase today.

Key Applications Driving Innovation

Synthesis of Glycosides

A fundamental building block for creating various glycosides, crucial in natural product chemistry and the development of novel therapeutics. This is a primary area where researchers buy tetra-o-benzyl-d-glucopyranose.

Carbohydrate Chemistry Research

Extensively used in developing complex carbohydrate structures for understanding glycan interactions and glycoscience, supporting cutting-edge biochemical studies. Your go-to organic intermediate supplier for these specialized needs.

Drug Development and Formulation

Plays a vital role in drug formulation, particularly in improving the properties of poorly soluble drugs, a key consideration when purchasing pharmaceutical intermediates.

Bioconjugation Techniques

Enables the attachment of biomolecules for diagnostics and therapeutics, highlighting its importance in advanced biomedical research and development.