Calcium Phosphorylcholine Chloride (CAS 4826-71-5): Essential Pharmaceutical Intermediate
Discover the critical properties and applications of Calcium Phosphorylcholine Chloride, a key component in pharmaceutical manufacturing.
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Calcium Phosphorylcholine Chloride
Calcium Phosphorylcholine Chloride (CAS 4826-71-5) is a vital compound primarily utilized as a pharmaceutical intermediate. Its consistent quality and specific chemical properties make it indispensable in the synthesis of various pharmaceutical products.
- Exploring the chemical properties of Calcium Phosphorylcholine Chloride: Understanding its molecular formula C5H13NO4P.Ca.Cl and molecular weight of 257.67 is crucial for precise formulation.
- Ensuring quality with Calcium Phosphorylcholine Chloride assay: A minimum assay of 97.0-102% guarantees the reliability of this compound in pharmaceutical production.
- Sourcing high-quality Calcium Phosphorylcholine Chloride suppliers: Reliable sourcing is key to maintaining consistent product quality and availability for pharmaceutical manufacturing needs.
- Understanding the application of Calcium Phosphorylcholine Chloride as a Pharmaceutical Intermediate: Its role is critical in the complex chain of drug development and production.
Key Advantages
Chemical Purity and Consistency
The high purity of Calcium Phosphorylcholine Chloride (CAS 4826-71-5) ensures predictable reaction outcomes and product integrity in pharmaceutical synthesis.
Critical Role in Pharmaceutical Synthesis
As a key pharmaceutical intermediate, its availability and quality directly impact the development and manufacturing of essential medicines.
Reliable Sourcing for Production
Securing a stable supply chain for Calcium Phosphorylcholine Chloride from reputable manufacturers is paramount for uninterrupted production schedules.
Key Applications
Pharmaceutical Intermediates
Calcium Phosphorylcholine Chloride serves as a foundational building block in the synthesis of a wide array of active pharmaceutical ingredients (APIs).
Chemical Synthesis
Its unique chemical structure makes it valuable in various organic synthesis processes beyond just pharmaceuticals.
Research and Development
Laboratories utilize this compound in R&D to explore new chemical reactions and potential therapeutic applications.
Quality Control in Manufacturing
Strict adherence to assay standards, like the 97%MIN requirement, highlights its importance in quality-controlled manufacturing environments.