USP-Specified TOC System Suitability Test by TOC-L CPH
Applications | 2013 | ShimadzuInstrumentation
Total Organic Carbon (TOC) analysis is essential for ensuring the purity of pharmaceutical-grade water, particularly purified water (PW) and water for injection (WFI). Rigorous control of organic impurities protects patient safety and complies with regulatory standards such as the United States Pharmacopeia (USP).
This application note demonstrates the suitability of the Shimadzu TOC-LCPH analyzer for meeting USP requirements, including system suitability testing and quantification of TOC at levels below 0.05 mg/L. It outlines test procedures, performance evaluation, and validation data supporting compliance.
The procedure involves:
The Shimadzu TOC-LCPH system offers:
The Shimadzu TOC-LCPH analyzer fully satisfies USP system suitability requirements and reliably quantifies TOC at concentrations below 0.05 mg/L. Its proven performance supports critical water quality assurance in pharmaceutical manufacturing.
TOC
IndustriesPharma & Biopharma
ManufacturerShimadzu
Summary
Importance of the Topic
Total Organic Carbon (TOC) analysis is essential for ensuring the purity of pharmaceutical-grade water, particularly purified water (PW) and water for injection (WFI). Rigorous control of organic impurities protects patient safety and complies with regulatory standards such as the United States Pharmacopeia (USP).
Study Objectives and Overview
This application note demonstrates the suitability of the Shimadzu TOC-LCPH analyzer for meeting USP requirements, including system suitability testing and quantification of TOC at levels below 0.05 mg/L. It outlines test procedures, performance evaluation, and validation data supporting compliance.
Methodology
The procedure involves:
- Measuring TOC in blank distilled water (rw).
- Analyzing a sucrose standard (0.50 mg/L C) to obtain rs.
- Testing a 1,4-benzoquinone solution (0.50 mg/L C) for system suitability (rss).
- Calculating detection rate: 100 × (rss–rw)/(rs–rw) and comparing to USP limits (85–115%).
- Assessing low-level quantitation by measuring a 0.025 mgC/L potassium hydrogen phthalate solution and evaluating precision.
Used Instrumentation
- Shimadzu TOC-LCPH combustion catalytic oxidation type analyzer
- High-sensitivity catalyst
- Sample injection volume: 816 μL
- Measurement mode: NPOC (TOC by acidification/sparging)
- Calibration: Two-point curve (0–0.5 mgC/L potassium hydrogen phthalate)
Main Results and Discussion
- The system suitability test achieved a detection rate of 100.1%, within the USP acceptance range of 85–115%.
- Measured values: blank water 0.0205 mg/L, sucrose standard 0.5173 mg/L, benzoquinone solution 0.5176 mg/L.
- Low-level measurement (0.025 mg/L target) yielded 0.047 mg/L with a coefficient of variation of 2.66%, demonstrating reliable quantification below 0.05 mg/L.
- Results confirm the analyzer’s precision, sensitivity, and compliance for routine pharmaceutical water monitoring.
Benefits and Practical Applications
The Shimadzu TOC-LCPH system offers:
- Regulatory compliance with USP TOC suitability and detection limits
- High sensitivity for monitoring trace organic impurities in PW and WFI
- Efficient workflow and rapid analysis suitable for pharmaceutical QC laboratories
Future Trends and Potential Applications
- Integration with laboratory information management systems (LIMS) for improved data handling and traceability
- Automation and workflow optimization to increase sample throughput and reduce manual intervention
- Expansion of TOC monitoring to broader water quality applications beyond pharmaceuticals
Conclusion
The Shimadzu TOC-LCPH analyzer fully satisfies USP system suitability requirements and reliably quantifies TOC at concentrations below 0.05 mg/L. Its proven performance supports critical water quality assurance in pharmaceutical manufacturing.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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