4-Chloro-3-hydroxybenzoic Acid: Synthesis, Applications, and Pharmaceutical Significance
Discover the critical role of 4-Chloro-3-hydroxybenzoic Acid (CAS: 34113-69-4) in pharmaceutical research, from influenza treatment to cancer therapy, and its value as a key chemical intermediate.
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4-Chloro-3-hydroxybenzoic acid
As a reputable supplier in China, we offer high-quality 4-Chloro-3-hydroxybenzoic acid. This compound is vital for developing advanced therapeutic agents, including potential influenza endonuclease inhibitors crucial for influenza treatment and for the synthesis of highly selective Tie-2 kinase inhibitors used in tumor therapy. We ensure reliable supply for your pharmaceutical R&D needs.
- Explore advanced pharmaceutical synthesis solutions using 4-Chloro-3-hydroxybenzoic acid CAS 34113-69-4 as a key building block.
- Investigate its potential as a potent influenza endonuclease inhibitor, contributing to novel antiviral drug design.
- Leverage this compound in the synthesis of Tie-2 kinase inhibitors, vital for developing targeted cancer therapies.
- Benefit from a reliable supply of this high-purity (97%) chemical intermediate, ensuring consistent results in your research and manufacturing processes.
Key Advantages
Versatile Chemical Intermediate
Utilize 4-Chloro-3-hydroxybenzoic acid in diverse chemical synthesis pathways, making it a valuable asset for your research and development projects, as highlighted in pharmaceutical synthesis.
Therapeutic Potential
This compound shows promise as an influenza endonuclease inhibitor, contributing to the development of treatments for influenza. Its role in Tie-2 kinase inhibitor synthesis also supports cancer therapeutics research.
Guaranteed Purity and Solubility
With a purity of 97% and excellent solubility in DMSO and Methanol, this chemical intermediate ensures reliable and efficient application in sensitive laboratory and manufacturing environments.
Key Applications
Influenza Treatment Research
Investigate 4-Chloro-3-hydroxybenzoic acid as a potential influenza endonuclease inhibitor, a critical step in developing new antiviral drugs to combat influenza.
Cancer Therapy Development
Employ this compound in the synthesis of selective Tie-2 kinase inhibitors, advancing the frontier of tumor therapy and targeted cancer treatments.
Organic Synthesis
Its properties make it a valuable building block in organic synthesis, facilitating the creation of complex molecules for various scientific and industrial applications.
Pharmaceutical R&D
As a key pharmaceutical intermediate, it supports the discovery and development of new drugs, contributing to advancements in medicinal chemistry.