Uridine 5'-triphosphate Sodium丨CAS 19817-92-6

Uridine 5'-triphosphate Sodium丨CAS 19817-92-6
Product Introduction:
Catalog No.: SS101138
CAS No.: 19817-92-6
Purity (HPLC): 90.0%min.
Product Name: Uridine 5'-triphosphate sodium
Molecular Formula: C9H12N2Na3O15P3
Molecular Weight: 550.09
Synonym(s): Uridine 5'-Triphosphate Trisodium Salt
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Technical Parameters
Description

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Specifications

 

Appearance: White powder or off-white powder or crystal powder
Content (Dry Basis): 80.0% min
Purity (HPLC): 90.0% min
Identification: Have the largest absorption at 262±2nm wavelength
A250 / A260 = 0.70–0.80
A280 / A260 = 0.33–0.43
Yields the flame reaction characteristic of sodium salts
Clarity and color of solution: Clarity, colorless
pH: 3.0–7.0
Loss on drying: 15.0% max
Protein: No turbidity is produced
Chloride: 0.2% max
Iron salt: 0.001% max
Heavy metals: 20 ppm max
Bacterial Endotoxins: 1.25 EU/mg max

 

Transport Information

 

Parameter

Specification

UN Number

 

Class

 

Packing Group

 

H.S. Code

2934993090102

Stability & Reactivity

The product is chemically stable under standard ambient conditions.

Storage

Tightly closed. Dry. Recommended storage temperature: -20 °C

Condition to Avoid

Strong oxidizing agents

Package

 

 

Manufacturing Information

 

Parameter

Specification

Capacity

500kg/month

Frequency

 

Main Export Countries

 

Capacity/Batch

 

Experience

Production since 2017

Stock

 

 

 

 

Applications

 

1. Biochemical and Molecular Biology Research

Used extensively as a substrate and cofactor in enzymatic reactions involving RNA synthesis and metabolism.

Serves as a key nucleotide triphosphate in in vitro transcription assays catalyzed by RNA polymerases.

Utilized in studies of nucleotide metabolism, enzyme kinetics, and signal transduction pathways.

2. Pharmaceutical and Therapeutic Research

Explored for its role in nucleic acid therapeutics, particularly in developing treatments targeting RNA synthesis or metabolism.

Investigated in cellular metabolism studies to enhance understanding of RNA and energy processes.

3. Nucleotide Analog Synthesis

Serves as a starting material or intermediate in the chemical synthesis of modified nucleotides and nucleotide analogs used as antiviral or anticancer agents.

4. Cosmetic and Nutraceutical Products

Sometimes included in formulations aimed at skin repair and regeneration due to its role in cell growth and RNA synthesis.

5. Agricultural Biotechnology

Investigated for potential use in plant growth regulation and as a signaling molecule in crop protection and development.

 

 

Benefits

 

 

✅ Essential Biological Molecule

Uridine triphosphate is a natural nucleotide vital for the synthesis of RNA and other cellular functions.

✅ High Solubility and Stability

The sodium salt form enhances water solubility and stability, making it suitable for biochemical assays and pharmaceutical formulations.

✅ Facilitates Enzymatic Studies

Key substrate for enzymes such as uridyl transferases, kinases, and polymerases, enabling detailed study of enzymatic mechanisms.

✅ Supports Cellular Functions

Plays a central role in glycogen synthesis, lipid metabolism, and signal transduction, making it valuable in metabolic research.

✅ Versatile for Chemical Modifications

Can be chemically modified at the nucleotide or sugar moiety to develop novel therapeutics or research probes.

 

 

Conclusion

 

Uridine 5'-triphosphate sodium (CAS 19817-92-6) is a crucial biochemical reagent and building block widely used in molecular biology, pharmaceutical research, and biotechnology. Its role as a natural nucleotide involved in RNA synthesis and metabolism, combined with its enhanced stability as a sodium salt, makes it indispensable for a variety of scientific and medical applications.

 

 

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