High-Purity [4-(3-methoxypropoxy)-3-methylpyridin-2-yl]methanol: A Key Rabeprazole Intermediate
Unlock efficient Rabeprazole synthesis with our premium grade pharmaceutical intermediate.
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[4-(3-methoxypropoxy)-3-methylpyridin-2-yl]methanol
Our offered [4-(3-methoxypropoxy)-3-methylpyridin-2-yl]methanol is a high-quality chemical compound, serving as a critical building block in the pharmaceutical industry, specifically for the synthesis of Rabeprazole. With an assured purity of u226598.0%, this intermediate ensures the efficacy and quality of the final active pharmaceutical ingredient (API).
- Discover efficient rabeprazole synthesis pathways by utilizing our high-purity intermediate.
- Source with confidence: buy [4-(3-methoxypropoxy)-3-methylpyridin-2-yl]methanol that meets stringent quality standards.
- Ensure the reliability of your pharmaceutical production with our trusted 117976-10-3 pharmaceutical intermediate.
- Achieve superior results in drug development by incorporating our high purity rabeprazole precursor.
Advantages You Gain
Guaranteed Purity
Attain u226598.0% purity, ensuring consistent and reliable outcomes in your pharmaceutical synthesis processes, vital for producing effective rabeprazole.
Cost-Effective Solutions
Leverage our competitive pricing for this essential pharmaceutical intermediate, making your API manufacturing more economical without compromising quality.
Reliable Supply Chain
Benefit from a stable and dependable supply of this key intermediate, crucial for maintaining uninterrupted production schedules for your pharmaceutical needs.
Key Applications
Rabeprazole Synthesis
This compound is a direct precursor in the multi-step synthesis of Rabeprazole, a widely prescribed proton pump inhibitor used to treat acid-related gastrointestinal disorders.
API Intermediates
Serves as a fundamental component in the creation of Active Pharmaceutical Ingredients (APIs), enabling the production of vital medications.
Pharmaceutical Building Blocks
Its chemical structure makes it a valuable building block for various organic synthesis projects within the pharmaceutical research and development sector.
Fine Chemical Manufacturing
Contributes to the broader fine chemical industry, offering specific pyridine derivative properties for specialized chemical applications.