Methyl (2S)-2-(2-chlorophenyl)-2-[2-(thiophen-2-yl)ethylamino]acetate Hydrochloride: A Key Pharmaceutical Intermediate
High purity chemical compound essential for advanced pharmaceutical synthesis and drug development.
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Methyl (2S)-2-(2-chlorophenyl)-2-[2-(thiophen-2-yl)ethylamino]acetate Hydrochloride
This high-purity compound serves as a pivotal intermediate in the synthesis of critical pharmaceutical agents. Its precise chemical structure and adherence to strict quality standards make it indispensable for manufacturers aiming for efficacy and safety in their end products, particularly in the development of cardiovascular drugs.
- Understanding the synthesis of Clopidogrel sulfate demonstrates the compound's critical role in producing life-saving medications.
- Ensuring high purity and low impurity levels are paramount for meeting global pharmaceutical standards and guaranteeing drug efficacy.
- Its use as a key pharmaceutical intermediate highlights its significance in the complex journey from raw chemical to therapeutic drug.
- Exploring the chemical intermediate for cardiovascular drugs reveals its direct impact on modern healthcare solutions and patient well-being.
Key Advantages
Exceptional Purity
With a purity of ≥98%, this compound guarantees minimal contaminants, ensuring consistent and reliable results in complex synthesis processes for high purity pharmaceutical intermediates.
Critical Role in Synthesis
As a vital component in the Clopidogrel intermediate synthesis, it directly contributes to the production of essential antiplatelet medications, impacting public health.
Chemical Stability
Possessing high boiling and flash points, the compound exhibits stability under demanding processing conditions, supporting efficient manufacturing workflows.
Key Applications
Pharmaceutical Intermediate
This chemical is a fundamental building block for various Active Pharmaceutical Ingredients (APIs), playing a crucial role in the API intermediate sector of the chemical industry.
Clopidogrel Production
It is specifically employed in the synthesis pathways leading to Clopidogrel and its derivatives, such as Clopidogrel sulfate and camphorsulfonate, vital for Clopidogrel synthesis.
Cardiovascular Drug Development
Its application extends to the broader field of cardiovascular drug development, supporting the creation of antiplatelet agents that address global health concerns.
Organic Synthesis
As a versatile molecule, it finds use in advanced organic synthesis, enabling the creation of complex molecular structures required in modern chemistry.