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Benefits of a Unique Multichannel Sipper Flow-Cell Pump for UV-Vis Measurements

Applications | 2020 | Agilent TechnologiesInstrumentation
UV–VIS spectrophotometry
Industries
Pharma & Biopharma
Manufacturer
Agilent Technologies

Summary

Significance of the Topic


Automating UV-Vis sample handling can significantly boost laboratory throughput while maintaining analytical accuracy. The manual steps of filling, cleaning, and managing cuvettes limit efficiency and introduce variability.

Objectives and Study Overview


This study compared a multichannel peristaltic pump accessory (Cary Sipper) integrated with the Agilent Cary 3500 UV-Vis spectrophotometer against manual cuvette handling for quantifying vitamin C in effervescent tablets. Metrics included measurement precision, linearity, and time efficiency.

Experimental Methodology and Instrumentation


Eight calibration standards (0–70 mg/L L-ascorbic acid in 0.1 M HCl) and 20 tablet-derived samples were prepared. Measurements were performed:
  • Manually with single or three 3.5 mL quartz cuvettes in the Cary 3500 Multicell.
  • Automatically with the Cary Sipper pumping into one or three 10 mm, 390 µL quartz flow cells.

Used Instrumentation


  • Agilent Cary 3500 Multicell UV-Vis spectrophotometer.
  • Cary Sipper multichannel sample pump accessory.
  • Standard 10 mm quartz cuvettes and 390 µL flow cells.

Key Results and Discussion


Calibration linearity was excellent for both setups (R2 > 0.9997). %RSD for all six replicate measurements per sample remained below 0.2%, exceeding pharmacopeial precision requirements. Quantitation of vitamin C matched labeled content within ±5.6%, with an average deviation around 2%. Time comparisons for 30 analyses:
  • Manual single cuvette: 21 min 30 s
  • Manual three-cuvette multicell: 16 min 26 s (24% faster)
  • Cary Sipper one flow cell: 19 min 32 s (9% faster)
  • Cary Sipper three flow cells: 7 min 30 s (65% faster)

Applications and Practical Benefits


The Cary Sipper streamlines UV-Vis workflows by integrating sample delivery within instrument software, enabling reproducible method settings and substantial time savings. It minimizes dilution needs for high-absorbance samples and leverages simultaneous detection.

Future Trends and Potential Applications


Advancements may include expanded channel capacity, coupling with flow-injection analysis, LIMS integration, and adaptation to diverse assays beyond vitamin C, further enhancing high-throughput spectroscopy.

Conclusion


The multichannel Cary Sipper accessory, when paired with the Cary 3500 UV-Vis system, matched manual cuvette performance in accuracy and precision while reducing analysis time by up to 65%, offering a robust solution for routine spectral measurements.

References


  • United States Pharmacopeia, Dietary Supplements Compendium, US Government Printing Office: Washington, DC, 2019.

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