Simple Labor-Saving Calibration Curve Creation Using Autosampler Automatic Dilution Function
Applications | 2024 | ShimadzuInstrumentation
The preparation of calibration standards through manual dilution is a common source of variability, human error and time consumption in HPLC workflows. Automating dilution steps directly in the autosampler offers a pathway to streamline sample preparation, boost laboratory productivity and ensure more consistent quantitative results.
This application note demonstrates how to employ the automatic dilution function of the Nexera XR autosampler to generate calibration curves without manual pipetting. Using a single method file and an autosampler pretreatment program, standard and sample solutions are diluted in situ at user-defined factors, then directly injected into the analytical column.
Automating sample and standard dilutions within the HPLC autosampler dramatically improves laboratory efficiency and data consistency. The method described allows for the rapid creation of accurate calibration curves and seamless quantification of real samples, reducing manual labor and the risk of human error.
No external literature references were provided.
HPLC
IndustriesManufacturerShimadzu
Summary
Significance of the Topic
The preparation of calibration standards through manual dilution is a common source of variability, human error and time consumption in HPLC workflows. Automating dilution steps directly in the autosampler offers a pathway to streamline sample preparation, boost laboratory productivity and ensure more consistent quantitative results.
Objectives and Study Overview
This application note demonstrates how to employ the automatic dilution function of the Nexera XR autosampler to generate calibration curves without manual pipetting. Using a single method file and an autosampler pretreatment program, standard and sample solutions are diluted in situ at user-defined factors, then directly injected into the analytical column.
Methodology and Instrumentation
- Autosampler Pretreatment Program: A sequence of commands in LabSolutions software controls volume calculations, vial transfers, mixing, rinsing and injection (see program outline).
- Batch Table Configuration: The SIL pretreatment variables set stock vial location, dilution ratio and mixing vial positions to automate calibration levels in the sample queue.
- Instrumentation:
- System: Shimadzu Nexera XR HPLC
- Column: Shim-pack GIST C18 (75 × 3.0 mm I.D., 2 µm)
- Autosampler with automatic dilution and multi-rinse function
- Detector: SPD-M40 UV at 272 nm
- Software: LabSolutions workstation with batch add-in
Main Results and Discussion
- Repeatability: A 500-fold dilution of 250 mg/L caffeine yielded six replicates with retention time RSD of 0.02 % and peak area RSD of 0.96 %.
- Calibration Linearity: A five-point curve over 0.5–50 mg/L caffeine showed r2 ≥ 0.999, confirming excellent quantitative performance.
- Beverage Analysis: Green tea and coffee samples, diluted 100-fold, produced caffeine concentrations of 1.32 mg/L (RSD 0.72 %) and 7.33 mg/L (RSD 1.66 %), respectively, demonstrating real-world applicability.
Benefits and Practical Applications
- Time Savings: Eliminates manual pipetting steps, reducing analyst workload and turnaround times.
- Consistency: Automated mixing and dilution minimize variability and potential operator errors.
- Simplicity: Single method file for all dilution levels simplifies method management when changing HPLC conditions.
- Automation: Direct report generation of sample concentrations based on set dilution factors accelerates data processing.
Future Trends and Potential Applications
- Expanded Multi-Rinse Protocols: Integration of advanced rinsing cycles to further reduce carryover for ultra-trace analysis.
- Broader Compound Scope: Application of in-autosampler dilution to a wider range of analytes including peptides and biologics.
- AI-Driven Optimization: Use of machine learning to predict optimal dilution protocols and minimize solvent use.
- Integration with High-Throughput Platforms: Coupling autosampler dilution with multi-sample injectors for large-scale screening programs.
Conclusion
Automating sample and standard dilutions within the HPLC autosampler dramatically improves laboratory efficiency and data consistency. The method described allows for the rapid creation of accurate calibration curves and seamless quantification of real samples, reducing manual labor and the risk of human error.
References
No external literature references were provided.
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