Bz-rA Phosphoramidite丨CAS 104992-55-4

Bz-rA Phosphoramidite丨CAS 104992-55-4
Product Introduction:
Catalog No.: SS131007
CAS No.: 104992-55-4
HPLC Purity: 99%min
Product Name: Bz-rA Phosphoramidite
Molecular Formula: C53H66N7O8PSi
Molecular Weight: 988.19
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Technical Parameters
Description

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Specifications

 

Appearance White to off-white powder
HPLC Purity 99% min
Any single impurity 0.5% max
3IPNMR Purity 98% min
P(III) Impurities (100-170 ppm) 0.5% max
Solubility Clarity 0.2 M solution in acetonitrile is free from undissolved particulate
Identity (by 1HNMR) To conform structure
Residual Solvent 3% max
Moisture 0.5% max

 

Transport Information

 

Parameter

Specification

UN Number

 

Class

 

Packing Group

 

H.S. Code

2934999099305

Stability & Reactivity

The product is chemically stable under standard ambient conditions.

Storage

Keep container tightly closed in a dry and well-ventilated place. Store in cool place. Storage stability Recommended storage temperature -20 °C

Condition to Avoid

 

Package

 

 

Manufacturing Information

 

Parameter

Specification

Capacity

50kg/month

Frequency

 

Main Export Countries

 

Capacity/Batch

 

Experience

Production since 2017

Stock

 

 

 

 

Applications

 

Bz-rA Phosphoramidite is primarily used in the synthesis of oligonucleotides and RNA sequences in molecular biology and pharmaceutical research. It serves as a protected adenine nucleotide building block in solid-phase synthesis, allowing precise incorporation into RNA strands. The benzoyl (Bz) protection on the adenine base prevents undesired side reactions during synthesis, ensuring high fidelity and yield. This compound is applied in the development of antisense oligonucleotides, RNA therapeutics, gene probes, and molecular diagnostics, as well as in research focused on RNA structure and function.

 

Benefits

 

The benefits of Bz-rA Phosphoramidite include its stability, high reactivity, and compatibility with automated oligonucleotide synthesizers. The benzoyl protection ensures selective reactions, reducing impurities and enhancing overall synthesis efficiency. Its use enables precise sequence control, allowing researchers to design RNA molecules with specific functional or therapeutic properties. Additionally, it contributes to reproducible synthesis, high yield, and reliable incorporation of adenine residues, which is critical for the performance of RNA-based therapeutics and analytical tools.

 

Conclusion

 

Bz-rA Phosphoramidite is a crucial building block in RNA synthesis, supporting the production of high-fidelity oligonucleotides for research, diagnostics, and therapeutics. Its stability, reactivity, and protective functionality make it indispensable for RNA-based applications. By enabling precise, efficient, and reproducible nucleotide incorporation, Bz-rA Phosphoramidite continues to play a vital role in molecular biology and pharmaceutical development.

 

 

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