N2-Isobutyrylguanosine Monohydrate: Synthesis, Properties, and Applications in Nucleic Acid Chemistry
Discover the synthesis, key properties, and vital applications of N2-Isobutyrylguanosine Monohydrate, a critical compound for advancing nucleic acid chemistry and pharmaceutical research.
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N2-Isobutyrylguanosine Monohydrate
N2-Isobutyrylguanosine Monohydrate stands as a pivotal synthetic nucleoside analog, offering significant value as an intermediate in sophisticated chemical syntheses. As a reliable supplier in China, we provide high-purity N2-Isobutyrylguanosine Monohydrate essential for creating phosphoramidites used in the formation of oligonucleotides. These oligonucleotides are instrumental in probing the mechanisms of RNA catalysis, a key area in molecular biology research. Furthermore, this compound serves as a building block in the synthesis of vital antiviral drugs and contributes to the development of food fresheners, showcasing its diverse utility.
- Unlock advancements in RNA catalysis research by utilizing this essential intermediate for oligonucleotide synthesis, a critical application for understanding molecular mechanisms.
- Ensure the purity and efficacy of your pharmaceutical intermediates with our high-grade N2-Isobutyrylguanosine Monohydrate, sourced from top manufacturers in China.
- Explore the synthesis of antiviral drugs, leveraging the chemical properties of this guanosine derivative to develop new therapeutic agents.
- Facilitate complex organic synthesis projects by incorporating this versatile molecule, a key component in various fine chemical applications.
Key Advantages
High Purity and Quality
Our N2-Isobutyrylguanosine Monohydrate boasts a purity exceeding 98% (HPLC), ensuring reliable and reproducible results in your critical research and synthesis applications, a testament to our manufacturing capabilities.
Versatile Chemical Intermediate
This compound is indispensable for the synthesis of 2'-O-(o-nitrobenzyl)-3'-thioguanosine phosphoramidite, crucial for creating oligonucleotides that probe the mechanism of RNA catalysis, reflecting its importance in cutting-edge scientific research.
Broad Application Spectrum
Beyond nucleic acid synthesis, N2-Isobutyrylguanosine Monohydrate finds use in the synthesis of antiviral drugs and food fresheners, demonstrating its adaptability across pharmaceutical and food industries.
Key Applications
Nucleic Acid Synthesis
As a key intermediate, it is vital for forming oligonucleotides, supporting in-depth studies of RNA catalysis and genetic research, a core area for many biotech companies.
Pharmaceutical Synthesis
Its role in synthesizing antiviral drugs highlights its significance in the pharmaceutical industry, contributing to the development of life-saving treatments.
Biochemical Research
Researchers utilize this compound to explore molecular mechanisms and develop novel biochemical tools, pushing the boundaries of scientific discovery.
Food Industry Applications
Its use in the synthesis of food fresheners demonstrates its utility beyond the laboratory, contributing to product development in the food sector.