Literature DB >> 33798331

Using Hybrid Organic-Inorganic Surface Technology to Mitigate Analyte Interactions with Metal Surfaces in UHPLC.

Mathew DeLano1, Thomas H Walter1, Matthew A Lauber1, Martin Gilar1, Moon Chul Jung1, Jennifer M Nguyen1, Cheryl Boissel1, Amit V Patel1, Andrew Bates-Harrison1, Kevin D Wyndham1.   

Abstract

Interactions of analytes with metal surfaces in high-performance liquid chromatography (HPLC) instruments and columns have been reported to cause deleterious effects ranging from peak tailing to a complete loss of the analyte signal. These effects are due to the adsorption of certain analytes on the metal oxide layer on the surface of the metal components. We have developed a novel surface modification technology and applied it to the metal components in ultra-HPLC (UHPLC) instruments and columns to mitigate these interactions. A hybrid organic-inorganic surface, based on an ethylene-bridged siloxane chemistry, was developed for use with reversed-phase and hydrophilic interaction chromatography. We have characterized the performance of UHPLC instruments and columns that incorporate this surface technology and compared the results with those obtained using their conventional counterparts. We demonstrate improved performance when using the hybrid surface technology for separations of nucleotides, a phosphopeptide, and an oligonucleotide. The hybrid surface technology was found to result in higher and more consistent analyte peak areas and improved peak shape, particularly when using low analyte mass loads and acidic mobile phases. Reduced abundances of iron adducts in the mass spectrum of a peptide were also observed when using UHPLC systems and columns that incorporate hybrid surface technology. These results suggest that this technology will be particularly beneficial in UHPLC/mass spectrometry investigations of metal-sensitive analytes.

Entities:  

Year:  2021        PMID: 33798331     DOI: 10.1021/acs.analchem.0c05203

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  3 in total

1.  Characterization of a highly stable zwitterionic hydrophilic interaction chromatography stationary phase based on hybrid organic-inorganic particles.

Authors:  Thomas H Walter; Bonnie A Alden; Kenneth Berthelette; Jessica A Field; Nicole L Lawrence; Justin McLaughlin; Amit V Patel
Journal:  J Sep Sci       Date:  2022-01-17       Impact factor: 3.614

Review 2.  mRNA Therapeutic Modalities Design, Formulation and Manufacturing under Pharma 4.0 Principles.

Authors:  Andreas Ouranidis; Theofanis Vavilis; Evdokia Mandala; Christina Davidopoulou; Eleni Stamoula; Catherine K Markopoulou; Anna Karagianni; Kyriakos Kachrimanis
Journal:  Biomedicines       Date:  2021-12-27

3.  Direct coupling of size exclusion chromatography and mass spectrometry for the characterization of complex monoclonal antibody products.

Authors:  Amarande Murisier; Marie Andrie; Szabolcs Fekete; Matthew Lauber; Valentina D'Atri; Katharina Iwan; Davy Guillarme
Journal:  J Sep Sci       Date:  2022-03-28       Impact factor: 3.614

  3 in total

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