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China Uridine Active Pharmaceutical Ingredient Suppliers - Quality Products from Trusted Factory

Basic Information

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  • CAS Number 58-96-8
  • Molecular Formula C9H12N2O6
  • Molucular Weight 244.2
  • Package Available in various packaging options including 500g/bag, 1kg/bag, and 5kg/bag. It is packaged in high - barrier composite aluminum foil bags to ensure product stability and protection. Additionally, we can also customize the packaging according to specific customer requirements.
  • Shelf Life It has a shelf life of two years when stored under proper conditions, which helps maintain its quality and efficacy over time.

Product Description
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Uridine is a glycosylated pyrimidine-analog consisting of uracil attached to a ribofuranose ring through a β-N₁-glycosidic bond — one of the five standard nucleosides that constitute nucleic acids.

Uridine is a glycosylated pyrimidine - analog. It consists of uracil attached to a ribose ring, more precisely a ribofuranose, through a β - N₁ - glycosidic bond. Among the five standard nucleosides that constitute nucleic acids, uridine holds a significant position. The other four nucleosides are adenosine, thymidine, cytidine, and guanosine. These five nucleosides are commonly abbreviated to their one - letter codes: U for uridine, A for adenosine, T for thymidine, C for cytidine, and G for guanosine.

Thymidine is more frequently written as 'dT', where the 'd' stands for 'deoxy'. This is because thymidine contains a 2'-deoxyribofuranose moiety, in contrast to the ribofuranose ring present in uridine. Thymidine is a component of deoxyribonucleic acid (DNA), while uridine is found in ribonucleic acid (RNA). The remaining three nucleosides (adenosine, cytidine, and guanosine) can be present in both RNA and DNA. In RNA, they are represented as A, C, and G, and in DNA, they are represented as dA, dC, and dG.

Product Specification
Items Specification
Description White or almost white crystalline powder
Identification The largest absorption at 262±2nm wavelength and the minimum absorption at 231±2nm
A250/A260 = 0.70 – 0.80  |  A280/A260 = 0.32 – 0.38
Clarity and Color of Solution Clarify
Loss on Drying ≤ 0.5%
Rotation +6.0° – +10.0°
Ignition Residue ≤ 0.1%
Purity (HPLC) ≥ 98.0%
Contents (Dry Basis) 98.0% – 102.0%
Applications
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Uridine serves as a key raw material for producing important pharmaceutical drugs, including fluorouracil (S-FC), a widely used anti-cancer agent.

Uridine has multiple applications in the medical field. It can be used as a medicine to treat various conditions such as macrocytic anemia, liver diseases, cerebrovascular diseases, and cardiovascular diseases. Moreover, it serves as the main raw material for the production of several important drugs. For example, it is used in the manufacture of fluorouracil (S - FC), a well - known anti - cancer drug. It is also involved in the synthesis of deoxyribonucleoside, idoxuridine (IDUR), bromodeoxyuridine (BUDR), and fluorodeoxyuridine (FUDR), all of which have significant medical uses in different therapeutic areas.

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Frequently Asked Questions (FAQ)
What is Uridine and what is its chemical structure?
Uridine is a glycosylated pyrimidine-analog composed of uracil attached to a ribofuranose ring via a β-N₁-glycosidic bond. It is one of the five standard nucleosides found in nucleic acids and plays a fundamental role in RNA structure and function.
What is the difference between Uridine and Thymidine?
The key difference lies in their sugar components: Uridine contains a ribofuranose ring and is found in RNA, while Thymidine (written as dT) contains a 2'-deoxyribofuranose moiety and is a component of DNA. This structural difference defines their distinct biological roles.
What is the purity level of your Uridine product?
Our Uridine product has a purity of ≥ 98.0% as measured by HPLC, with a content (dry basis) of 98.0% – 102.0%, ensuring high-quality pharmaceutical and research-grade standards.
What are the main medical applications of Uridine?
Uridine is used to treat macrocytic anemia, liver diseases, cerebrovascular diseases, and cardiovascular diseases. It also serves as a critical raw material for producing anti-cancer drugs such as fluorouracil (S-FC), idoxuridine (IDUR), bromodeoxyuridine (BUDR), and fluorodeoxyuridine (FUDR).
What is the physical appearance of Uridine?
Uridine appears as a white or almost white crystalline powder. Its solution is clear, with a specific optical rotation of +6.0° to +10.0° and a loss on drying of no more than 0.5%.
How is Uridine identified in laboratory testing?
Uridine is identified by UV absorption spectroscopy: it shows its largest absorption at 262±2nm and minimum absorption at 231±2nm. Additionally, the absorbance ratios A250/A260 = 0.70–0.80 and A280/A260 = 0.32–0.38 are used as confirmation parameters.

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