trans-4-Cyclohexyl-L-proline Hydrochloride: A Vital Pharmaceutical Intermediate
Discover the critical role of high-purity cyclohexyl proline hydrochloride in advanced pharmaceutical synthesis.
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trans-4-Cyclohexyl-L-proline hydrochloride
This high-purity white powder is an essential building block in the complex synthesis of Gefitinib, a targeted therapy for certain cancers. Its precise chemical structure and purity ensure the efficacy and safety of the final pharmaceutical product, making it a sought-after intermediate for API manufacturers.
- Unlock advancements in Gefitinib synthesis with this crucial pharmaceutical intermediate.
- Leverage the high purity (≥98.0%) of trans-4-cyclohexyl-l-proline hydrochloride for reliable drug production.
- Ensure consistent quality in your API manufacturing by utilizing CAS 90657-55-9 chemical.
- Discover the benefits of using this cyclohexyl proline hydrochloride derivative in advanced chemical reactions.
Key Advantages
Guaranteed Purity for API Synthesis
Achieve superior results in your Gefitinib synthesis with a compound boasting a minimum assay of 98.0%, ensuring predictable reaction outcomes and a high-quality final product.
Essential for Targeted Cancer Therapies
This intermediate is indispensable for the production of Gefitinib, a life-saving medication used in the treatment of specific types of cancer, highlighting its critical role in healthcare.
Reliable Supply Chain Partner
As a key cyclohexyl proline hydrochloride intermediate, its consistent availability and quality support your ongoing research and production needs, ensuring your supply chain remains robust.
Key Applications
Pharmaceutical Synthesis
Serves as a critical building block in the synthesis pathways of advanced pharmaceutical compounds, particularly for targeted therapies like Gefitinib.
API Manufacturing
Essential for Active Pharmaceutical Ingredient (API) manufacturers who require high-purity intermediates to meet stringent quality standards for drug production.
Chemical Research & Development
Valuable for research chemists exploring new synthetic routes or developing novel pharmaceutical agents that require specific chiral building blocks.
Oncology Drug Development
Directly contributes to the development and production of drugs targeting cancer, underscoring its significance in the fight against the disease.