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Capillary electrophoresis coupled to negative mode electrospray ionization-mass spectrometry using an electrokinetically-pumped nanospray interface with primary amines grafted to the interior of a glass emitter.
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We demonstrate an electrokinetically pumped sheath flow nanospray interface for capillary electrophoresis coupled to negative mode electrospray mass spectrometry. In this interface, application of an electric field generates electro-osmotic flow at the interior of a glass emitter that is pulled to a 10-20µm inner diameter orifice. Electro-osmotic flow pumps liquid around the distal tip of the separation capillary, ensheathing analyte into the electrospray electrolyte. In negative ion mode, negative potential applied to an untreated glass emitter drives sheath flow away from the emitter orifice, decreasing the stability and efficiency of the spray. In this manuscript, we treat a portion of the interior of the electrospray emitter with 3-aminopropyltrimethoxysilane, which grafts primary amines to the interior. The amines take on a positive charge, which reverses electro-osmosis and generates stable sheath flow to the emitter orifice under negative potential. Negative mode operation is demonstrated by analyzing a metabolite extract from stage 1 Xenopus laevis embryos. Production of the treated emitters was quite reproducible. We evaluated the performance of three emitters using a set of amino acids; the relative standard deviation in peak intensity was 7% for the most intense component.
Bonvin,
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Bonvin,
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2012,
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2015,
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Electrospray ionization for mass spectrometry of large biomolecules.
1989,
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2016,
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2014,
Pubmed Kessner,
ProteoWizard: open source software for rapid proteomics tools development.
2008,
Pubmed Krylov,
Instrumentation for chemical cytometry.
2000,
Pubmed Langan,
Capillary electrophoresis coupled to electrospray mass spectrometry through a coaxial sheath flow interface and semi-permanent phospholipid coating for the determination of oligosaccharides labeled with 1-aminopyrene-3,6,8-trisulfonic acid.
2012,
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2017,
Pubmed Moini,
Simplifying CE-MS operation. 2. Interfacing low-flow separation techniques to mass spectrometry using a porous tip.
2007,
Pubmed Peuchen,
Optimization and comparison of bottom-up proteomic sample preparation for early-stage Xenopus laevis embryos.
2016,
Pubmed
,
Xenbase Schiavone,
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2015,
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2015,
Pubmed
,
Xenbase Sun,
Quantitative proteomics of Xenopus laevis embryos: expression kinetics of nearly 4000 proteins during early development.
2014,
Pubmed
,
Xenbase Sun,
Ultrasensitive and fast bottom-up analysis of femtogram amounts of complex proteome digests.
2013,
Pubmed Sun,
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2014,
Pubmed Wang,
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2012,
Pubmed Wojcik,
Simplified capillary electrophoresis nanospray sheath-flow interface for high efficiency and sensitive peptide analysis.
2010,
Pubmed