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Evaluation of two sub-2 μm stationary phases, core-shell and totally porous monodisperse, in the second dimension of on-line comprehensive two dimensional liquid chromatography, a case study: separation of milk peptides after expiration date.

Authors :
Sommella E
Pepe G
Ventre G
Pagano F
Manfra M
Pierri G
Ismail O
Ciogli A
Campiglia P
Source :
Journal of chromatography. A [J Chromatogr A] 2015 Jan 02; Vol. 1375, pp. 54-61. Date of Electronic Publication: 2014 Dec 04.
Publication Year :
2015

Abstract

Milk is a rich source of bioactive peptides of great interest for their healthy properties. These peptides are usually encrypted in the sequences of proteins and are released after time dependent proteolysis as very complex hydrolysates. In order to separate and identify the bioactive sequences, we developed an on-line comprehensive two dimensional liquid chromatography approach using the high performance combined with the ultra high performance conditions. A microbore reversed phase (C18 silica, 5 μm) column was employed in first dimension, while, in second dimension, two different UHPLC columns, packed with C18 silica, were tested: a new column based on monodisperse sub-2 μm fully porous particles with high surface area (50 mm × 3.0 mm, 1.9 μm d.p., from Supelco), and a column based on sub-2 μm core-shell particles (50 mm × 3.0 mm, 1.7μm d.p, from Phenomenex(®)). Both set-ups were compared, showing high peak capacity values with respect to a high efficiency monodimensional method, maintaining the same analysis time. Satisfactory selectivity was obtained through the use of different pH between the two dimension, while a very fast continuous shifted gradient in second dimension ensured a good employment of the 2D separation space.<br /> (Copyright © 2014 Elsevier B.V. All rights reserved.)

Details

Language :
English
ISSN :
1873-3778
Volume :
1375
Database :
MEDLINE
Journal :
Journal of chromatography. A
Publication Type :
Academic Journal
Accession number :
25498555
Full Text :
https://doi.org/10.1016/j.chroma.2014.11.072