(3S)-3-[4-[(5-Bromo-2-chlorophenyl)methyl]phenoxy]tetrahydrofuran: A Key Pharmaceutical Intermediate
Unlocking the synthesis of vital diabetes medications with high-purity chemical intermediates.
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(3S)-3-[4-[(5-Bromo-2-chlorophenyl)methyl]phenoxy]tetrahydrofuran
This compound serves as a critical building block in the pharmaceutical industry, specifically in the efficient synthesis of Empagliflozin, a sodium-glucose cotransporter-2 (SGLT-2) inhibitor used to treat type 2 diabetes. Its precise chemical structure and high purity are essential for the successful and cost-effective manufacturing of the final active pharmaceutical ingredient.
- Exploring the synthesis of empagliflozin intermediate reveals the compound's vital role in producing advanced diabetes treatments.
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Key Advantages
High Purity for Reliable Synthesis
With a purity exceeding 95% (HPLC), this intermediate guarantees consistent reaction outcomes, which is paramount when discussing pharmaceutical intermediate cas 915095-89-5 supplier requirements.
Critical for Empagliflozin Production
Its indispensable role in the synthesis of empagliflozin intermediate makes it a cornerstone for manufacturers of this widely used diabetes medication.
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Key Applications
Pharmaceutical Manufacturing
Essential for the large-scale production of Empagliflozin, a critical drug for managing type 2 diabetes. Understanding the empagliflozin intermediate manufacturer china landscape is key for efficient supply chains.
Drug Discovery & Development
Used in research and development settings to explore new synthetic routes or variations of SGLT-2 inhibitors, relying on precise pharmaceutical intermediate cas 915095-89-5 supplier capabilities.
Chemical Synthesis Research
A valuable compound for organic chemists studying complex heterocyclic synthesis and developing new methodologies for producing active pharmaceutical ingredients.
Quality Control and Reference Standards
Serves as a reference material for quality control processes in the manufacturing of Empagliflozin, ensuring the purity and identity of the final product.