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Specifications
| Appearance | The product should be white to off-white amorphous powder |
| Identity (by 1HNMR) | To conform structure |
| Purity (HPLC) | 98% min |
| Related Substances (by HPLC) | |
| Any individual impurity | 1% max |
| Total impurities | 2% max |
| Moisture content | 2% max |
Applications
6-Amino-2-chloropurine riboside (CAS 146-77-0) is a nucleoside analogue widely used as an intermediate in pharmaceutical and biochemical research. Its purine riboside framework, with modifications at the amino and chloro positions, makes it valuable for the synthesis of antiviral and anticancer agents. In drug discovery, it serves as a precursor in the preparation of nucleoside-based therapeutics that target viral replication or abnormal cellular proliferation. It is also employed in enzymatic and metabolic studies to probe nucleic acid metabolism, providing insights into biochemical pathways and enzyme selectivity. Beyond pharmaceuticals, it is applied in academic research involving nucleoside chemistry, helping to develop modified ribosides with enhanced therapeutic or diagnostic potential.
Benefits
The benefits of 6-amino-2-chloropurine riboside stem from its structural versatility and biological relevance. The riboside backbone allows it to mimic natural nucleosides, enabling incorporation into biochemical systems, while the chlorine and amino substitutions provide reactive handles for structural modification. This balance of natural mimicry and synthetic adaptability makes it an efficient starting point for generating drug candidates with improved selectivity, potency, and stability. Its ability to participate in diverse chemical reactions supports flexible synthetic routes, reducing complexity and accelerating the development of advanced therapeutics. Additionally, its use in biochemical assays enhances understanding of nucleoside-related biological processes, contributing to both fundamental science and applied research.
Conclusion
In summary, 6-amino-2-chloropurine riboside is an important nucleoside analogue that plays a central role in pharmaceutical synthesis and biochemical investigation. Its applications span antiviral and anticancer drug development, metabolic pathway studies, and nucleoside chemistry research, while its benefits include structural adaptability, synthetic efficiency, and biological relevance. As interest in nucleoside-based therapies and diagnostics continues to expand, this compound remains a crucial intermediate and research tool in advancing modern biomedical innovation.

