Agilent CE and CE/MS Solutions
Brochures and specifications | 2017 | Agilent TechnologiesInstrumentation
The integration of capillary electrophoresis with mass spectrometry addresses critical demands in analytical chemistry by combining high-efficiency separations, minimal sample and reagent consumption, and orthogonal mobility-based information. This is essential for applications such as biopharmaceutical characterization, trace impurity analysis, environmental monitoring, and semiconductor process control.
This document presents the Agilent 7100 CE system and its fully integrated CE/MS solutions, focusing on their design principles, operational flexibility across multiple electrophoretic modes, seamless coupling with Agilent 6000 Series mass spectrometers, and the supporting software and consumables that enable robust method development and routine analysis.
The Agilent 7100 CE system supports capillary zone electrophoresis, micellar electrokinetic chromatography, capillary isoelectric focusing, isotachophoresis, and capillary electrochromatography. A triple-tube sheath-liquid electrospray interface enables direct coupling to Single Quad, Triple Quad, TOF, or QTOF mass spectrometers from the Agilent 6000 Series. Separation is performed in fused silica capillaries with options for bubble cell and high-sensitivity UV detectors. Method control and data acquisition are managed by a single workstation using OpenLAB CDS (ChemStation Edition) and Agilent MassHunter software.
High-resolution separations demonstrated sub-ppb detection of inorganic anions and cations in semiconductor-grade solutions. Glycan profiling of monoclonal antibodies achieved clear separation of N-glycans with high throughput. Protein impurity analysis revealed the ability to detect low-level host cell proteins and isoform variants with excellent reproducibility. Bubble cell capillaries provided up to five-fold UV sensitivity enhancement without compromising separation efficiency.
Advances may include further miniaturization and microfluidic integration, enhanced sheath-liquid compositions, improved ion source designs for greater sensitivity, broader adoption of nanoflow proteomics workflows, and integration of AI-driven data analysis tools to streamline method development and interpretation.
The Agilent 7100 CE system and its fully integrated CE/MS solutions provide a robust, flexible, and high-performance platform suitable for a wide range of analytical challenges. Through unified software control, advanced interfaces, and comprehensive consumables and service support, laboratories can achieve reliable, high-sensitivity separations and accelerate application deployment across diverse fields.
LC/TOF, LC/HRMS, LC/MS, LC/MS/MS, LC/QQQ, Capillary electrophoresis
IndustriesManufacturerAgilent Technologies
Summary
Significance of the Topic
The integration of capillary electrophoresis with mass spectrometry addresses critical demands in analytical chemistry by combining high-efficiency separations, minimal sample and reagent consumption, and orthogonal mobility-based information. This is essential for applications such as biopharmaceutical characterization, trace impurity analysis, environmental monitoring, and semiconductor process control.
Objectives and Overview of the Study/Article
This document presents the Agilent 7100 CE system and its fully integrated CE/MS solutions, focusing on their design principles, operational flexibility across multiple electrophoretic modes, seamless coupling with Agilent 6000 Series mass spectrometers, and the supporting software and consumables that enable robust method development and routine analysis.
Methodology and Instrumentation
The Agilent 7100 CE system supports capillary zone electrophoresis, micellar electrokinetic chromatography, capillary isoelectric focusing, isotachophoresis, and capillary electrochromatography. A triple-tube sheath-liquid electrospray interface enables direct coupling to Single Quad, Triple Quad, TOF, or QTOF mass spectrometers from the Agilent 6000 Series. Separation is performed in fused silica capillaries with options for bubble cell and high-sensitivity UV detectors. Method control and data acquisition are managed by a single workstation using OpenLAB CDS (ChemStation Edition) and Agilent MassHunter software.
Instrumental Setup
- Agilent 7100 Capillary Electrophoresis System
- Triple-tube sheath-liquid CE/MS interface
- Agilent 6000 Series Mass Spectrometer (Single Quad, Triple Quad, TOF, QTOF)
- UV Diode Array Detector with bubble cell and high-sensitivity cell options
- OpenLAB CDS (ChemStation Edition) and MassHunter software platforms
Key Results and Discussion
High-resolution separations demonstrated sub-ppb detection of inorganic anions and cations in semiconductor-grade solutions. Glycan profiling of monoclonal antibodies achieved clear separation of N-glycans with high throughput. Protein impurity analysis revealed the ability to detect low-level host cell proteins and isoform variants with excellent reproducibility. Bubble cell capillaries provided up to five-fold UV sensitivity enhancement without compromising separation efficiency.
Benefits and Practical Applications
- Versatile analysis of small ions, organic acids, peptides, proteins, and polymers
- Low sample and buffer consumption with nanoliter injection volumes
- Orthogonal selectivity to liquid chromatography
- Seamless workflow using unified software for CE and MS
- High throughput and unattended operation with autosampler and reagent replenishment
- Reliable support through comprehensive consumables and service plans
Future Trends and Opportunities
Advances may include further miniaturization and microfluidic integration, enhanced sheath-liquid compositions, improved ion source designs for greater sensitivity, broader adoption of nanoflow proteomics workflows, and integration of AI-driven data analysis tools to streamline method development and interpretation.
Conclusion
The Agilent 7100 CE system and its fully integrated CE/MS solutions provide a robust, flexible, and high-performance platform suitable for a wide range of analytical challenges. Through unified software control, advanced interfaces, and comprehensive consumables and service support, laboratories can achieve reliable, high-sensitivity separations and accelerate application deployment across diverse fields.
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