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Agilent 6120B Single Quadrupole Walkup System

Technical notes | 2016 | Agilent TechnologiesInstrumentation
LC/MS, LC/SQ
Industries
Pharma & Biopharma
Manufacturer
Agilent Technologies

Summary

Importance of the Subject


The ability to perform robust, reproducible LC/MS analyses in a multi-user environment is critical for pharmaceutical discovery, quality control, and research laboratories. Centralized administration of method creation, user access, and instrument monitoring reduces errors, maintains data integrity, and ensures consistent performance for both expert and non-expert operators.

Study Objectives and Overview


This Technical Overview presents the administrative features of the Agilent 6120B Single Quadrupole Walkup System, detailing system configuration, method creation, sample management, and reporting workflows. It further evaluates the reproducibility and robustness of the system using an eight-compound test mix under regular use conditions.

Methodology


An eight-compound test mix representing diverse pKa, hydrophobicity, and molecular weight ranges was prepared at 5 ppm. A rapid 10-minute LC method with an ammonium acetate buffer (pH 5.8) and methanol gradient on a Poroshell 120 EC-C18 column was developed. MS detection employed the 6120B multimode source with fast polarity switching. Robustness was assessed by overlaying UV and total ion chromatograms from injections before and after 200 routine sample runs.

Instrumentation

  • 1260 Infinity LC modules: Degasser (G1322A), Binary Pump (G1312B), Sampler (G1329B) with external tray, Column Thermostat (G1316A) with two-position valve, Diode Array Detector (G4212B).
  • 6120B Single Quadrupole LC/MS with fast polarity-switching multimode ESI/APCI source.
  • MassHunter Walkup Software integrated with OpenLAB CDS ChemStation and Analytical Studio Reviewer for centralized method management, user roles, and reporting.

Key Results and Discussion


UV and MS data demonstrated clear separation and ionization of all eight compounds in positive mode, with four detectable in negative mode. Overlay of chromatograms before and after 200 injections showed negligible shifts in retention time or signal intensity, confirming system reproducibility. Administrator-driven autotune and event scheduling maintained consistent instrument sensitivity and minimized downtime.

Benefits and Practical Applications


Preconfigured administrative workflows allow non-expert users to submit advanced LC/MS analyses for compound confirmation, purity checks, and impurity profiling without deep technical knowledge. Role-based access controls secure data management, enforce lab protocols, and integrate seamlessly with OpenLAB services for controlled result distribution.

Future Trends and Applications


Advances may include automated, real-time performance monitoring with AI-driven diagnostics, tighter integration with laboratory information management systems (LIMS), and expanded capabilities for high-throughput screening. Shorter polarity-switching times and enhanced multimode sources will broaden the range of analytes accessible in walk-up environments.

Conclusion


The Agilent 6120B Single Quadrupole Walkup System combines robust hardware, flexible software administration, and streamlined user workflows to deliver reliable LC/MS performance. Administrative privileges enable efficient method management, instrument monitoring, and data reporting, ensuring high uptime and consistent results in multi-user laboratories.

References


  1. Li S.; et al. Enhanced Performance Test Mix for High-Throughput LC/MS Analysis of Pharmaceutical Compounds. Chem. 2006, 8, 820–828.
  2. Agilent Technologies. Walkup LC/MS Analysis. Technical Overview 5991-3786EN, 2014.

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