Understanding 7-(4-Bromobutoxy)-3,4-dihydro-2(1H)-quinolinone: A Key Intermediate in Pharmaceutical Synthesis
Discover the critical role of this pharmaceutical intermediate in drug development and manufacturing.
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3,4-Dihydro-7-(4-bromobutoxy)-2(1H)-quinolinone
This compound serves as a vital building block in the complex process of pharmaceutical manufacturing, particularly as an intermediate in the synthesis of the widely used antipsychotic medication, Aripiprazole. Its precise chemical structure and properties make it indispensable for achieving the desired therapeutic outcomes.
- As a key intermediate in the synthesis of Aripiprazole, understanding the role of this compound is crucial for efficient drug development.
- Its presence as an impurity in Aripiprazole synthesis highlights the importance of stringent quality control measures in pharmaceutical production.
- The CAS number 129722-34-5 uniquely identifies this chemical, facilitating accurate tracking and sourcing for researchers and manufacturers.
- This compound's physical properties, such as its off-white crystalline powder appearance and a melting point of 110-111°C, are important considerations for handling and processing in pharmaceutical intermediates manufacturing.
Key Advantages
Reliable Pharmaceutical Intermediate
The compound's established role as an intermediate in Aripiprazole synthesis ensures its reliability for pharmaceutical applications, directly supporting drug development efforts.
Quality Control Insight
Recognizing it as a potential impurity in Aripiprazole synthesis underscores the necessity for advanced analytical methods and strict quality control protocols in API manufacturing.
Precise Chemical Identification
The unique CAS number 129722-34-5 is instrumental for precise identification and sourcing, simplifying the procurement process for research and commercial use.
Key Applications
Pharmaceutical Synthesis
Crucial for the multi-step synthesis of active pharmaceutical ingredients, particularly Aripiprazole, aiding in the production of essential medications.
Drug Development
Serves as a key component in R&D, enabling the exploration and optimization of synthesis routes for new and existing drugs.
Impurity Studies
Its identification as an impurity provides valuable insights for quality assurance, helping to develop methods for its detection and control in final drug products.
Chemical Research
A valuable compound for organic chemistry research, offering a platform for exploring new reactions and developing novel molecules.