High-Purity Phenylboronic Acid Intermediate for Sparsentan
Your essential building block for advanced pharmaceutical synthesis and drug discovery.
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(2-(N-(4,5-Dimethyl-3-Isoxazolyl)-N-(Methoxymethyl)Sulfamoyl)Phenyl)Boronic Acid
This compound, identified by CAS number 415697-58-4, is a critical intermediate in the synthesis of Sparsentan, a vital component in modern pharmaceutical development. Its unique chemical structure, featuring a phenylboronic acid moiety coupled with a sulfonamide-isoxazole framework, offers significant versatility in organic synthesis and medicinal chemistry applications.
- Discover the precise synthesis of Sparsentan using this high-purity phenylboronic acid intermediate. Learn about the meticulous preparation methods that ensure product integrity for pharmaceutical applications.
- Explore the chemical reactivity for Suzuki-Miyaura coupling reactions, a key tool in organic synthesis building blocks. Understand how this intermediate facilitates the creation of complex molecular structures.
- Investigate its potential biological activities, including enzyme inhibition and applications in anticancer research chemical. Delve into the therapeutic promise of this boronic acid derivative.
- Ensure reliable pharmaceutical intermediate quality control through advanced spectroscopic techniques. Gain insights into the validation processes that guarantee purity and consistency for your research needs.
Key Advantages
Versatile Synthesis Applications
Leverage this compound as a key organic synthesis building block, particularly for complex molecular architectures via Suzuki-Miyaura coupling reactions.
Medicinal Chemistry Relevance
Utilize its potential as an enzyme inhibitor, a crucial aspect in medicinal chemistry research for developing novel therapeutics.
High Purity and Quality Assurance
Benefit from stringent quality control and advanced analytical techniques, ensuring a reliable supply of this pharmaceutical intermediate.
Key Applications
Organic Synthesis
This intermediate is a valuable tool for organic synthesis building blocks, enabling the efficient formation of carbon-carbon bonds through cross-coupling reactions.
Medicinal Chemistry
Its structure makes it a candidate for drug discovery, potentially acting as an enzyme inhibitor and contributing to anticancer research chemical development.
Pharmaceutical Research
As a crucial pharmaceutical intermediate for Sparsentan, it plays a vital role in the development and production of therapeutic agents.
Impurity Profiling
Used for impurity profiling in Sparsentan synthesis, aiding in the overall quality assurance of pharmaceutical products.