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Transferring methods to the Agilent 1290 Infinity LC using Intelligent System Emulation Technology (ISET)

Technical notes | 2014 | Agilent TechnologiesInstrumentation
HPLC
Industries
Manufacturer
Agilent Technologies

Summary

Significance of the Topic


The seamless transfer of established HPLC methods to modern UHPLC instruments is critical for pharmaceutical quality control and research laboratories. Intelligent System Emulation Technology (ISET) addresses the challenges posed by different system dead volumes and mixing behaviors, enabling consistent retention times and resolution without extensive method revalidation.

Objectives and Study Overview


This study demonstrates the transfer of a conventional metoclopramide hydrochloride assay method from the Agilent 1100 Series Quaternary LC System to the Agilent 1290 Infinity LC System. It evaluates how ISET and its manual fine-tuning feature affect retention time alignment and chromatographic resolution when analyzing metoclopramide and nine related impurities.

Methodology


Sample Composition:
  • Main compound: Metoclopramide hydrochloride
  • Impurities EP C to EP H and others (nine in total, including bromated and acetylated derivatives)
Chromatographic Conditions:
  • Column: ZORBAX Eclipse Plus C18, 150×3.0 mm, 3.5 µm
  • Mobile phase: 10 mM ammonium acetate (pH 6.99)/acetonitrile gradient (5 % to 57.5 % ACN over 15 min)
  • Flow: 0.6 mL/min; column temp: 37 °C; injection 1 µL
  • Detection: Diode array at 275/4 nm (ref 400/60 nm), 5 Hz, 4 nm slit

Used Instrumentation


Agilent 1290 Infinity LC System with ISET:
  • Binary Pump (G4220A)
  • Autosampler with Thermostat (G4226A, G1330B)
  • Thermostatted Column Compartment (G1316C)
  • Diode Array Detector (G4212A)
Agilent 1100 Series Quaternary LC System:
  • Quaternary Pump (G1311A)
  • Autosampler (G1313A)
  • Thermostatted Column Compartment (G1316A)
  • Diode Array Detector (G1315B, 13 µL cell)
Software and Firmware:
  • ChemStation C.01.03; ISET 1.0
  • Module firmware A.06.32, B.06.32 or higher

Main Results and Discussion


  • Without ISET, retention times shifted 5 %–23 % to earlier elution compared to the 1100 Series reference.
  • Enabling ISET reduced these shifts to within ±1.5 % for most peaks (one peak at ~4 %).
  • Applying manual fine-tuning (20 µL delay volume offset and operating pressure compensation) further aligned retention times to within 0.8 % (one peak within 3 %).
  • Chromatographic resolution improved on the 1290 Infinity system due to lower after-column dispersion.

Benefits and Practical Applications


  • Accelerates migration of legacy methods to UHPLC platforms with minimal revalidation.
  • Maintains or enhances separation performance for critical pharmaceutical assays.
  • Reduces downtime and resource requirements in regulated QC environments.

Future Trends and Opportunities


Expanding the use of ISET and automated fine-tuning to gradient and multi-solvent methods will further streamline method transfers. Integration with instrument control software could enable self-optimizing workflows and digital method archiving, enhancing reproducibility across laboratories.

Conclusion


ISET on the Agilent 1290 Infinity LC System effectively emulates the behavior of the Agilent 1100 Series system, achieving excellent retention time alignment and resolution. Manual fine-tuning can refine results to sub-1 % deviation, simplifying method migration and improving analytical throughput.

References


  1. Agilent 1290 Infinity LC with Intelligent System Emulation Technology, Agilent Brochure 5990-8670EN, 2011
  2. G. Vanhoenacker et al., Increasing productivity in the analysis of metoclopramide hydrochloride formulations using the Agilent 1290 Infinity LC system, Application Note 5990-3981EN, 2009

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