Pantoprazole Magnesium Dihydrate: Molecular Formula, CAS Number & Properties
- chemiceamarketing
- May 20
- 3 min read
Updated: 5 days ago
Pantoprazole Magnesium Dihydrate is an important pharmaceutical compound widely used in the development and formulation of proton pump inhibitor (PPI) medications. It is commonly utilized in pharmaceutical research, analytical studies, API development, and quality control applications.
This compound is a magnesium salt form of pantoprazole and is known for its stability and effectiveness in acid-suppressing formulations. Pharmaceutical manufacturers and analytical laboratories often use high-purity Pantoprazole Magnesium Dihydrate reference materials during analytical method development, impurity profiling, and stability testing.
Companies such as Chemicea provide high-quality pharmaceutical reference standards, impurity standards, API materials, and analytical compounds for pharmaceutical research and quality control applications.
What Is Pantoprazole Magnesium Dihydrate?
Pantoprazole Magnesium Dihydrate is a proton pump inhibitor (PPI) compound used in pharmaceutical formulations designed to reduce stomach acid production.
It belongs to the benzimidazole class of compounds and is commonly associated with gastrointestinal therapeutic research.
The magnesium salt form improves:
Stability
Formulation performance
Pharmaceutical processing properties
Molecular Formula of Pantoprazole Magnesium Dihydrate
The molecular formula of Pantoprazole Magnesium Dihydrate is:
C32 H28 F4 Mg N6 O8 S2 ⋅ 2H2O
This formula represents:
Pantoprazole magnesium salt
Two water molecules (dihydrate form)
The dihydrate structure contributes to the compound’s physical and chemical stability.
CAS Number of Pantoprazole Magnesium Dihydrate
The CAS Number is a unique chemical identifier used internationally for chemical substances.
Pantoprazole Magnesium Dihydrate is commonly identified using its specific CAS registry number in:
Pharmaceutical databases
Regulatory documentation
Chemical inventories
Analytical reports
CAS numbers help avoid confusion between:
Salt forms
Hydrates
Isomers
Related compounds
Key Chemical Properties
Pantoprazole Magnesium Dihydrate possesses several important pharmaceutical and analytical properties.
Property | Details |
Compound Type | Proton Pump Inhibitor (PPI) |
Chemical Form | Magnesium Salt Dihydrate |
Appearance | White to off-white powder |
Solubility | Slightly soluble in water |
Stability | Improved stability compared to some free base forms |
Usage | Pharmaceutical research and analytical applications |
Importance in Pharmaceutical Research
Pantoprazole Magnesium Dihydrate is widely used in:
API development
Formulation studies
Analytical method development
Stability testing
Pharmaceutical quality control
Pharmaceutical companies require high-purity reference materials for accurate analytical testing and reproducibility.
Role in Analytical Method Development
Analytical laboratories use Pantoprazole Magnesium Dihydrate during:
HPLC analysis
Assay testing
Stability studies
Dissolution testing
Impurity profiling
Accurate reference standards help ensure:
Reliable quantification
Proper peak identification
Method reproducibility
Importance in Stability Studies
Pantoprazole compounds can be sensitive to:
Moisture
Temperature
Acidic conditions
Oxidative degradation
The magnesium dihydrate form helps improve formulation stability during pharmaceutical development and storage studies.
Reference standards are essential for monitoring:
Degradation products
Stability-related impurities
Analytical consistency
Importance of Pharmaceutical Reference Standards
Reference standards are critical for:
Pharmaceutical quality control
Regulatory compliance
Method validation
Analytical accuracy
High-quality analytical standards improve:
Reproducibility
Sensitivity
Data reliability
Companies like Chemicea provide pharmaceutical reference materials used in analytical laboratories and pharmaceutical research applications.
Related Pharmaceutical Impurity Standards
Pantoprazole-related analytical studies may also involve impurity and related compound analysis.
Relevant pharmaceutical impurity standards from your list include:
Ketoconazole EP Impurity A
Mirtazapine EP Impurity C
Donepezil EP Impurity G
Bisoprolol EP Impurity B
These standards are commonly used during:
HPLC method development
Impurity profiling
Stability-indicating methods
Pharmaceutical Applications
Pantoprazole Magnesium Dihydrate may be involved in:
API manufacturing
Research formulations
Dissolution studies
Stability analysis
Pharmaceutical analytical testing
High-purity analytical materials support accurate laboratory results.
Importance in HPLC and LC-MS Analysis
The compound is frequently analyzed using:
HPLC
UPLC
LC-MS/MS
These techniques help determine:
Purity
Assay value
Related substances
Degradation products
Analytical reference standards improve chromatographic accuracy and reproducibility.
Storage and Handling Considerations
Proper storage conditions are important to maintain:
Chemical integrity
Analytical purity
Stability
Pharmaceutical reference standards are typically stored:
In cool, dry conditions
Protected from light and moisture
In tightly sealed containers
Conclusion
Pantoprazole Magnesium Dihydrate is an important pharmaceutical compound widely used in analytical chemistry, API research, formulation development, and pharmaceutical quality control. Its improved stability and analytical relevance make it valuable for HPLC analysis, stability studies, and pharmaceutical method development.
High-quality reference standards are essential for accurate impurity profiling, analytical validation, and reproducible laboratory results.
Companies like Chemicea support pharmaceutical laboratories and researchers by providing API reference standards, impurity standards, intermediates, and analytical compounds for pharmaceutical research and quality control applications.




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