High-Purity (R)-1-Aminoindane Hydrochloride: A Key Intermediate for Rasagiline Mesylate Synthesis
Discover the critical role of this high-purity intermediate in the development of Parkinson's disease treatments.
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(R)-1-Aminoindane Hydrochloride
This compound is a vital chiral intermediate extensively utilized in the synthesis of Rasagiline Mesylate, a potent therapeutic agent for Parkinson's disease. Its high purity and specific stereochemistry are paramount for ensuring the efficacy and safety of the final drug product.
- As a high purity R-1-Aminoindane Hydrochloride, it serves as a crucial building block in the synthesis of Rasagiline Mesylate.
- Leveraging buy R-1-Aminoindane Hydrochloride from reliable suppliers ensures consistent quality for your pharmaceutical production.
- This R-1-Aminoindane Hydrochloride pharmaceutical intermediate is characterized by its off-white to white powder appearance and high assay.
- We understand the importance of sourcing the right R-1-Aminoindane Hydrochloride intermediate for Rasagiline Mesylate synthesis to meet stringent pharmaceutical standards.
Key Advantages
Exceptional Purity
With an assay of ≥99.0% (HPLC), this intermediate guarantees minimal impurities, crucial for sensitive pharmaceutical synthesis and meeting rigorous quality control standards.
Critical for Parkinson's Treatment
Its role in the synthesis of Rasagiline Mesylate makes it indispensable for manufacturers developing treatments for Parkinson's disease, supporting the creation of effective neuroprotective therapies.
Stereochemical Integrity
The specific (R)-configuration is essential for the pharmacological activity of Rasagiline Mesylate, ensuring the correct enantiomer is produced for optimal therapeutic benefit.
Key Applications
Pharmaceutical Synthesis
As a pharmaceutical intermediate, its primary application is in the multi-step synthesis of APIs, particularly for neurological conditions.
Rasagiline Mesylate Production
It is a key precursor in the manufacturing of Rasagiline Mesylate, an MAO-B inhibitor used in the management of Parkinson's disease symptoms.
Chiral Chemistry
Its chiral nature makes it valuable in stereoselective synthesis, enabling the production of specific enantiomers required for drug efficacy.
Research and Development
Used in R&D for developing new synthetic routes and exploring new applications in medicinal chemistry.