In the dynamic fields of life sciences and pharmaceutical development, specialized chemical compounds play crucial roles. Among these, 10-Acetyl-3,7-dihydroxyphenoxazine, often abbreviated as ADHP (CAS 119171-73-2), stands out for its dual utility as a high-performance fluorogenic probe and a valuable pharmaceutical intermediate. Understanding its properties and applications is key for researchers and manufacturers looking to leverage its capabilities.
The Chemistry and Properties of ADHP
ADHP is a compound characterized by its unique phenoxazine structure, functionalized with acetyl and hydroxyl groups. Its chemical formula is C14H11NO4, and its molecular weight is approximately 257.24 g/mol. One of its most significant features is its role as a fluorogenic substrate. In the presence of enzymes like horseradish peroxidase (HRP) and a source of hydrogen peroxide (H2O2), ADHP undergoes a transformation to produce a highly fluorescent resorufin molecule. This process is highly sensitive and allows for the detection and quantification of H2O2 or enzymatic activity at very low concentrations.
Beyond its application as a probe, ADHP also serves as a critical intermediate in the synthesis of more complex organic molecules. Its reactive functional groups make it amenable to further chemical modifications, essential for building intricate structures required in pharmaceutical research and development.
Key Applications of ADHP
Where to Buy ADHP (CAS 119171-73-2)
For researchers and companies needing to buy ADHP, sourcing from reputable chemical suppliers is essential. When searching for a supplier, pay close attention to the CAS number (119171-73-2) to ensure you are procuring the correct compound. Key factors to consider include:
Many global chemical providers list ADHP for sale, with specialized manufacturers in China being significant sources. When you search for 'ADHP price' or 'purchase CAS 119171-73-2,' you will find numerous options. It is advisable to compare several suppliers to find the best combination of quality, price, and reliability.
Conclusion
10-Acetyl-3,7-dihydroxyphenoxazine (ADHP) is a versatile compound with significant applications in both biochemical research and pharmaceutical synthesis. Its ability to serve as a sensitive fluorogenic probe and a functional intermediate makes it an indispensable tool. By understanding its properties and carefully selecting a supplier, researchers and manufacturers can effectively integrate ADHP into their projects, driving innovation and discovery.
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