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Comprehensive Two-Dimensional HPLC and Informative Data Processing for Pharmaceuticals and Lipids

Posters | 2015 | ShimadzuInstrumentation
LC/TOF, LC/MS, LC/MS/MS, LC/QQQ, 2D-LC, LC/IT
Industries
Pharma & Biopharma, Lipidomics
Manufacturer
Shimadzu

Summary

Význam tématu


Comprehensive two-dimensional liquid chromatography (2D-LC) offers unmatched resolution for complex mixtures in pharmaceutical analysis and lipidomics. By coupling two orthogonal separation modes, 2D-LC resolves coeluting components that challenge single-dimension systems. This capability is critical for accurate quantification, qualitative profiling and differential comparison of natural products and biological lipids.

Cíle a přehled studie / článku


This work demonstrates the performance of the Nexera-e 2D-LC platform in two applications: analysis of the traditional Chinese medicine Kakkonto (an herbal mixture containing glycyrrhizic acid, ephedrine and cinnamic acid) using reversed-phase×reversed-phase (RP×RP) with photodiode array detection, and comprehensive profiling of glycerophospholipids using normal-phase×reversed-phase (NP×RP) coupled to tandem and high-resolution mass spectrometry. Objectives include evaluation of separation orthogonality, sensitivity, linearity, repeatability and informative data processing.

Použitá metodika a instrumentace


Both workflows employed Nexera-e with alternating loops for modulation between first and second dimensions. Instrumentation details:
  • Herbal extract (Kakkonto): first-dimension RP at neutral pH (Shim-pack XR ODSII, 1.5 mm I.D.), second-dimension RP at acidic pH (Kinetex C18, 3 mm I.D.) with PDA detection (SPD-M30A, 254 nm).
  • Lipidomics: first-dimension NP (Nucleosil SIL, 1.0 mm I.D.), second-dimension RP (Kinetex C18, 4.6 mm I.D.) with split flow to LCMS-8050 triple quadrupole (MRM mode) and LCMS-IT-TOF (accurate-mass scan).

Hlavní výsledky a diskuse


In the Kakkonto study, use of an auto-gradient program in the second dimension enhanced peak shape and area repeatability for glycyrrhizic acid (r2 = 0.9998, five replicates RSD < 2 %). Differential 2D contour plots enabled clear differentiation of two commercial product batches. In lipid analysis, RP×NP MRM quantitation of phosphatidylcholines achieved linearity over 50–5000 µg/L (r2 = 0.9999) and RSD < 5 %. The IT-TOF contour plots in positive and negative modes permitted selective detection of PC, PE and PG classes. Accurate m/z and MS2 fragmentation data processed by database matching (LipidSearch) reliably identified species such as 16:0–20:4 PG.

Přínosy a praktické využití metody


  • High orthogonality resolves dozens of coeluting compounds in herbal and lipid samples.
  • Combined PDA, triple-quadrupole and IT-TOF detection deliver quantitative and qualitative data in a single workflow.
  • Auto-gradient functionality improves throughput and robustness of 2D runs.
  • Differential contour plots provide intuitive comparison across sample batches for quality control.

Budoucí trendy a možnosti využití


Advances may include integration of real-time data processing algorithms and machine learning to automate peak annotation and sample classification. Expanding 2D-LC to metabolomics, proteomics or environmental monitoring can leverage its high peak capacity. Coupling with microfluidic sampling and high-throughput autosampling will further enhance applications in drug discovery and lipid biomarker research.

Závěr


The Nexera-e platform successfully achieved quantitative, qualitative and comparative analyses of complex herbal extracts and lipid mixtures. Orthogonal RP×RP and NP×RP separations combined with PDA, MS/MS and IT-TOF detection provided high resolution, sensitivity, linearity and reproducibility. Data-driven contour and database matching tools enabled reliable identification and differentiation of target compounds.

Reference


  • Y. Watabe et al., "Comprehensive Two-Dimensional HPLC and Informative Data Processing for Pharmaceuticals and Lipids," Shimadzu Corporation, First Edition June 2015.

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