High-Purity 4-Methyl-7h-Pyrrolo[2, 3-D]Pyrimidine: Synthesis, Applications, and Quality Assurance
Discover the essential chemical intermediate for advanced pharmaceutical development and research.
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4-Methyl-7h-Pyrrolo[2,3-d]Pyrimidine
Unlock the potential of advanced chemical synthesis with our high-purity 4-Methyl-7h-Pyrrolo[2,3-d]Pyrimidine. This crucial pharmaceutical intermediate, identified by CAS number 945950-37-8, is meticulously manufactured to meet stringent quality standards, ensuring its reliability for complex research and development projects.
- Explore the synthesis pathways for 4-Methyl-7h-Pyrrolo[2,3-d]Pyrimidine, crucial for pharmaceutical applications.
- Ensure your Ruxolitinib Phosphate synthesis projects benefit from using a reliable pharmaceutical intermediate with CAS 945950-37-8.
- Leverage high purity chemical synthesis for your critical research needs with this key analytical reagent.
- Trust in a GMP and ISO 9001 certified product for consistent quality in chemical medicine development.
Key Advantages
Exceptional Purity
Our commitment to high purity chemical synthesis ensures that 4-Methyl-7h-Pyrrolo[2,3-d]Pyrimidine meets the demanding requirements of pharmaceutical research.
Versatile Applications
Utilize this compound as a vital laboratory reagent and analytical reagent in chemical medicine, supporting diverse scientific endeavors.
Quality Assurance
Benefit from adherence to GMP and ISO 9001 standards, guaranteeing a dependable source for your critical chemical intermediate needs.
Key Applications
Pharmaceutical Synthesis
This compound is a foundational element in the synthesis of active pharmaceutical ingredients, playing a key role in drug development.
Scientific Research
Its high purity makes it an ideal choice for various laboratory applications, advancing scientific understanding.
Chemical Medicine
As a critical analytical reagent, it aids in the quality control and analysis within the chemical medicine sector.
Ruxolitinib Phosphate Production
A primary use is as an intermediate in the production of Ruxolitinib Phosphate, a significant therapeutic agent.