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  • Analysis of underivatized cellodextrin oligosaccharides by capillary electrophoresis with direct photochemically induced UV-detection.

Analysis of underivatized cellodextrin oligosaccharides by capillary electrophoresis with direct photochemically induced UV-detection.

Electrophoresis (2015-03-31)
Elodie Alinat, Selma Jemmali, Nathalie Delaunay, Xavier Archer, Pierre Gareil
ABSTRACT

This work focuses on the development of a CE method allowing, for the first time, the simultaneous separation of the underivatized first seven cellodextrin oligomers (glucose, cellobiose, cellotriose, cellotetraose, cellopentaose, cellohexaose, and celloheptaose), with a view to analyze the hydrolysates obtained after partial acid depolymerization of nitrocellulose, and eight carbohydrates (ribose, xylose, fructose, mannose, galactose, maltose, lactose, and sucrose), which might be potential interfering compounds in explosives samples. Separation was achieved with a highly alkaline BGE containing sodium chloride and direct mid-UV-absorbance detection was performed after photo-oxidation in the detection window. EOF was reversed to speed up the analysis using a dynamic capillary coating by hexadimethrine bromide. A central composite design was carried out to determine the effects of BGE conductivity and sodium hydroxide concentration on resolutions between neighboring peaks, and analysis time. A desirability analysis on modeled responses was applied to maximize resolutions and to minimize analysis time. The simultaneous analysis in 20 min total runtime of the 15 carbohydrates plus internal reference (naphthalene sulfonate) was carried out at 25°C with a BGE composed of 77.4 mM NaOH and 183 mM NaCl to adjust the conductivity at the optimum value. Finally, the resolution robustness was checked. This new method should also be of interest to monitor food and nonfood crop products.

MATERIALS
Product Number
Brand
Product Description

SAFC
Sodium chloride solution, 5 M
Sigma-Aldrich
Sodium chloride, BioPerformance Certified, ≥99% (titration), suitable for insect cell culture, suitable for plant cell culture
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D-(+)-Maltose monohydrate, BioUltra, ≥99.0% (HPLC)
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D-(+)-Mannose, BioUltra, ≥99.5% (sum of enantiomers, HPLC)
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D-(−)-Ribose, ≥98%
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Sodium chloride, 99.999% trace metals basis
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Sodium hydroxide solution, BioUltra, for molecular biology, 10 M in H2O
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D-(−)-Fructose, BioUltra, ≥99.0% (HPLC)
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D-(+)-Galactose, meets analytical specification of Ph. Eur., BP
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Sodium hydroxide, BioUltra, for luminescence, ≥98.0% (T), pellets
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D-(−)-Ribose, 98%
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Sodium chloride, AnhydroBeads, −10 mesh, 99.999% trace metals basis
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3-Ethyl-2,4-pentanedione, mixture of tautomers, 98%
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D-(+)-Glucose, BioUltra, anhydrous, ≥99.5% (sum of enantiomers, HPLC)
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Sodium chloride solution, 5 M in H2O, BioReagent, for molecular biology, suitable for cell culture
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D-(+)-Maltose monohydrate, from potato, ≥99% (HPLC)
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Sodium hydroxide solution, 1.0 N, BioReagent, suitable for cell culture
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D-(+)-Maltose monohydrate, ≥99% (HPLC), BioXtra
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D-(−)-Fructose, ≥99% (HPLC)
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D-(−)-Fructose, ≥99% (HPLC), BioReagent, suitable for cell culture, suitable for insect cell culture
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D-(−)-Fructose, 98.0-102.0% dry basis, meets USP testing specifications
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D-(+)-Mannose, powder, BioReagent, suitable for cell culture
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D-(+)-Galactose, ≥99% (HPLC)
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D-(+)-Glucose, powder, BioReagent, suitable for cell culture, suitable for insect cell culture, suitable for plant cell culture, ≥99.5%
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D-(+)-Galactose, ≥99% (HPLC), BioReagent, suitable for cell culture, suitable for insect cell culture
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D-(+)-Galactose, BioXtra, ≥99% (HPLC)