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Product Line: Life Science

Xanthine

CAS 69-89-6

Molecular structure of Xanthine

CAS · 69-89-6

01

Product Overview

Xanthine is a high-purity nucleosides-nucleotides supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.

02

Product Specifications

Description White to slightly yellow powder
Purity by HPLC 99.0% min
Solubility Colorless solution to pale yellow solution
Identification The HNMR spectrum conforms to structure
03

Applications

1. Biochemical and Medical Research

Key intermediate in purine metabolism, serving as a precursor to uric acid.

Used in enzyme assays and metabolic studies to investigate:

Purine degradation

Enzyme activities (e.g., xanthine oxidase and xanthine dehydrogenase)

Disorders like gout, xanthinuria, and hyperuricemia

2. Pharmacological Research

Closely related to methylxanthines (e.g., caffeine, theobromine, theophylline), making it a starting point in the synthesis of:

Bronchodilators

Stimulants

Vasodilators

Studied for its role in adenosine receptor modulation, which affects cardiovascular and central nervous system function.

3. Antioxidant and Free Radical Studies

As a substrate for xanthine oxidase, it is used in generating reactive oxygen species (ROS) in experimental models.

Helps evaluate antioxidant capabilities of various compounds in in vitro oxidative stress assays.

4. Analytical Reagent

Employed in high-performance liquid chromatography (HPLC) and spectrophotometry to study purine metabolism.

Used as a reference compound for detecting purine bases in nucleic acid analysis.

5. Drug Design and Development

Serves as a scaffold molecule for synthetic analogs targeting:

Adenosine receptors (A1, A2A, A2B, A3)

Phosphodiesterase enzymes (PDEs)

Kinase inhibitors

Helps create bioactive derivatives with applications in CNS disorders, asthma, and cardiovascular diseases.

04

Benefits

1. Biological Relevance

Xanthine丨CAS 69-89-6 occurs naturally in the metabolic breakdown of purines in humans and animals.

Plays a vital role in understanding diseases associated with purine metabolism dysfunction, such as:

Gout

Renal lithiasis

Lesch–Nyhan syndrome

2. Research Utility

Easily incorporated into enzymatic reaction assays to study oxidative stress and antioxidant properties.

Its transformation by xanthine oxidase makes it useful in ROS generation studies, simulating inflammatory conditions.

3. Synthetic Flexibility

Acts as a precursor or intermediate in the production of numerous pharmaceutical and agrochemical molecules.

Its purine ring system offers diverse modification points for SAR (Structure–Activity Relationship) exploration.

4. Safe Handling and Low Cost

Compared to other purine analogs, xanthine is:

Non-toxic in moderate amounts

Commercially available at low cost

Stable under standard storage conditions

05

Conclusion

Xanthine丨CAS 69-89-6 is a biologically significant purine derivative that serves as both a metabolic intermediate and a versatile research compound. It is essential in studies of purine metabolism, oxidative stress, enzyme function, and drug discovery. Its structural similarity to bioactive methylxanthines, stability, and compatibility with biological systems make it a valuable component in biochemistry, pharmacology, and analytical chemistry.

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