4-Isopropoxyphenylboronic Acid: A Key Intermediate in Pharmaceutical Synthesis
Unlock advanced drug discovery with this vital building block for complex molecular structures.
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4-Isopropoxyphenylboronic Acid
This high-purity compound serves as a critical pharmaceutical intermediate, enabling the efficient synthesis of sophisticated molecules for drug development. Its utility in reactions like the Suzuki coupling makes it indispensable for constructing complex drug molecules and exploring structure-activity relationships.
- Utilize 4-Isopropoxyphenylboronic Acid in the synthesis of potent cytotoxic analogues derived from marine alkaloids, pushing the boundaries of cancer research.
- Leverage this boronic acid for synthesizing cyclooxygenase-2 (COX-2) inhibitors, vital for developing anti-inflammatory and analgesic medications.
- Achieve high purity (≥98.0%) with 4-Isopropoxyphenylboronic Acid, ensuring reliable results in your critical synthesis steps.
- Benefit from its stable white or off-white solid powder appearance, simplifying handling and storage in your laboratory environment.
Advantages You Gain
Versatile Synthetic Utility
This compound is a cornerstone for advanced organic synthesis, particularly in creating novel drug candidates through established boronic acid cross coupling reaction methodologies.
Drug Discovery Acceleration
By facilitating the creation of complex diaryl compounds, it significantly aids in the drug discovery process, allowing rapid exploration of chemical space.
Quality Assurance
With a guaranteed assay of ≥98.0%, this chemical intermediate provides the reliability needed for demanding pharmaceutical applications and advanced pharmaceutical intermediates requirements.
Key Applications
Pharmaceutical Synthesis
Essential for creating complex active pharmaceutical ingredients (APIs) and exploring structure-activity relationships in medicinal chemistry.
Medicinal Chemistry Research
A key building block for designing and synthesizing novel compounds with potential therapeutic applications, supporting medicinal chemistry efforts.
Organic Synthesis
Widely employed in various organic reactions, particularly cross-coupling reactions for forming carbon-carbon bonds, making it a staple for organic synthesis labs.
Cytotoxic Agent Development
Crucial for the synthesis of molecules that exhibit cytotoxic activity, aiding in the development of new anti-cancer therapies and cytotoxic analogues marine alkaloid research.
Related Technical Articles & Resources
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