Exploring 2-Amino-6-chloropurine-9-riboside: A Key Pharmaceutical Intermediate
Unlock the potential of antiviral and anticancer drug development with this crucial building block.
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2-Amino-6-chloropurine-9-riboside
This compound is a critical chemical raw material and pharmaceutical intermediate, highly valued for its role in the synthesis of nucleoside analogs. Its unique chemical structure makes it an essential component in the development of innovative antiviral and anticancer drugs, contributing significantly to medicinal chemistry advancements.
- Pioneering Antiviral and Anticancer Therapies: Discover how this pharmaceutical intermediate serves as a crucial precursor in the synthesis of nucleoside analogs, vital for developing new treatments against viral infections and cancers.
- High Purity for Reliable Synthesis: With a stringent assay of ≥99.0% by HPLC, this compound ensures the integrity and effectiveness of your pharmaceutical development projects.
- Advancing Biochemical Understanding: Explore its utility in biochemical studies, aiding researchers in understanding complex metabolic pathways and the mechanisms of disease.
- Essential Building Block in Medicinal Chemistry: Leverage this compound's versatility as a key building block in medicinal chemistry, enabling the creation of targeted molecules with enhanced bioactivity.
Key Advantages
Drug Discovery Catalyst
As a vital pharmaceutical intermediate, it accelerates the discovery and development of novel drugs by providing a reliable synthetic pathway for crucial nucleoside analogs.
Enhanced Bioactivity Potential
The specific structure of 2-Amino-6-chloropurine-9-riboside allows for modifications that can lead to molecules with improved bioactivity, a key factor in effective therapeutic agents.
Commitment to Quality
Manufacturing processes adhere to strict quality controls, ensuring low loss on drying, minimal residue on ignition, and minimal heavy metal content for exceptional purity.
Key Applications
Antiviral Research
This compound is extensively studied for its potential antiviral properties, making it a valuable asset in the search for new treatments against viral pathogens.
Anticancer Drug Development
Its role as a precursor for nucleoside analogs is fundamental in creating effective medications for various types of cancer, targeting diseased cells directly.
Biochemical Studies
Researchers utilize this chemical raw material to investigate cellular mechanisms and metabolic pathways, deepening the understanding of nucleic acid metabolism.
Pharmaceutical Synthesis
Serves as a crucial building block in the complex synthesis of various pharmaceutical compounds, ensuring high quality and efficacy in final products.
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