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Waters ARC PREMIER SOLUTION

Brochures and specifications | 2021 | WatersInstrumentation
HPLC
Industries
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Waters

Summary

Importance of the Topic


Liquid chromatography is fundamental in analytical chemistry for separating and quantifying complex mixtures.
Metal-sensitive analytes often interact with metal surfaces in conventional systems, causing peak tailing, signal loss, and variable recovery.
The Arc Premier Solution addresses these challenges by minimizing secondary interactions, ensuring reliable, high-quality data without lengthy conditioning.

Study Overview and Objectives


To evaluate the performance of the Arc Premier Solution compared to conventional LC systems in terms of sensitivity, reproducibility, and workflow efficiency.
Key aims included demonstration of improved analyte recovery for nucleotides and phospholipids, assessment of multi-user reproducibility, and evaluation of solvent management strategies.

Methodology and Instrumentation


MaxPeak High Performance Surfaces Technology was employed to reduce nonspecific binding.
Chromatographic separations were performed on the Arc Premier System using MaxPeak Premier Columns and QuanRecovery vials and plates.
Analytes such as adenosine mono, di and triphosphate, dexamethasone phosphate derivatives, and peptide standards were tested under various gradients and injection sequences.
Comparisons included conventional LC hardware and both quaternary and binary solvent management.

Used Instrumentation


  • Arc Premier System
  • MaxPeak Premier Columns
  • QuanRecovery vials and plates
  • Waters Empower Chromatography Data System
  • MassLynx Software

Main Results and Discussion


Significant improvements in sensitivity and recovery were observed for nucleotides, with sharper peaks and lower limits of detection.
Calibration curves for adenosine triphosphate and dexamethasone phosphate demonstrated extended linearity and reduced variability without system conditioning.
Reproducibility across six users improved peak area precision by 9 to 124-fold for metal-sensitive steroids.
Binary solvent management delivered 56 percent better retention time reproducibility and up to 96 percent improvement in peak area precision compared to quaternary systems.
Long-term injection studies over 120 runs showed stable peak areas on the Arc Premier Solution, whereas conventional systems exhibited increasing signal drift.

Benefits and Practical Applications


The Arc Premier Solution streamlines workflows by eliminating time-consuming passivation and conditioning steps.
Labs can achieve higher data quality, reduce the risk of undetected analytes, and accelerate sample-to-result timelines.
The system-to-system reproducibility supports method transfer across instruments and sites, enhancing consistency in regulated environments.

Future Trends and Opportunities


Integration with advanced informatics and automated sample preparation can further enhance throughput and data integrity.
Continued development of surface chemistry and column technologies may extend benefits to a wider range of challenging analytes.
Adoption of binary solvent management and modular hardware designs is expected to grow for flexible, routine operation in high-throughput laboratories.

Conclusion


The Arc Premier Solution represents a significant advance in liquid chromatography, delivering unparalleled sensitivity, reproducibility, and efficiency for metal-sensitive compounds.
MaxPeak High Performance Surfaces Technology and optimized solvent management combine to reduce variability and simplify workflows, meeting both current analytical demands and future regulatory expectations.

Reference


  • No external references provided in the original document.

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Waters ARC PREMIER SYSTEM
Waters ARC PREMIER SYSTEM
2021|Waters|Brochures and specifications
[ ARC PREMIER SYSTEM ] See clearly and consistently, with confidence. [ ARC PREMIER SYSTEM ] Today’s scientists and lab managers need to confidently produce the most accurate, reliable, and reproducible data. The Waters™ Arc™ Premier System produces correct, robust…
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