Keyword search (3,448 papers available)


Capillary electrochromatography of peptides and proteins.

Author(s): Bandilla D, Skinner CD

J Chromatogr A. 2004 Jul 30;1044(1-2):113-29 Authors: Bandilla D, Skinner CD

Article GUID: 15354432

Design and optimization of porous polymer enzymatic digestors for proteomics.

Author(s): Lin W, Skinner CD

J Sep Sci. 2009 Aug;32(15-16):2642-52 Authors: Lin W, Skinner CD

Article GUID: 19575382

Increased oxidative modifications of amniotic fluid albumin in pregnancies associated with gestational diabetes mellitus.

Author(s): Boisvert MR, Koski KG, Skinner CD

Anal Chem. 2010 Feb 01;82(3):1133-7 Authors: Boisvert MR, Koski KG, Skinner CD

Article GUID: 20063865

A case of fatal idiosyncratic reaction to the designer drug 3,4-methylenedioxypyrovalerone (MDPV) and review of the literature.

Author(s): Desharnais B, Dazé Y, Huppertz LM, Mireault P, Skinner CD

Forensic Sci Med Pathol. 2017 Sep;13(3):350-354 Authors: Desharnais B, Dazé Y, Huppertz LM, Mireault P, Skinner CD

Article GUID: 28668987


Title:Design and optimization of porous polymer enzymatic digestors for proteomics.
Authors:Lin WSkinner CD
Link:https://www.ncbi.nlm.nih.gov/pubmed/19575382?dopt=Abstract
DOI:10.1002/jssc.200900221
Category:J Sep Sci
PMID:19575382
Dept Affiliation: CHEMBIOCHEM
1 Department of Chemistry and Biochemistry, Concordia University, Montréal, Québec, Canada.

Description:

Design and optimization of porous polymer enzymatic digestors for proteomics.

J Sep Sci. 2009 Aug;32(15-16):2642-52

Authors: Lin W, Skinner CD

Abstract

Effective protein characterization and identification are demanding and time-consuming operations in proteomics because of long-protein purification/separation procedures, and even longer enzymatic digestions. In this work, polymer-based monolithic enzyme reactors were fabricated in fused-silica capillaries, and performance was characterized through protein digestion and identification by MALDI-MS and ESI-MS. Reactors were prepared by fabricating a porous methacrylate base monolith followed by photografting with glycidyl methacrylate, and immobilization of the enzyme(s) with carbonyldiimidazole. Trypsin and Staphylococcus aureus V-8 protease (Glu-C) were used to produce three types of reactors: trypsin-based, Glu-C-based, and trypsin combined with Glu-C. Protein digestions, performed by perfusing protein solutions through the reactor under pressure, were evaluated based on the peptide map generated when directly coupled to an ESI mass spectrometer. Excellent digestion was observed over flow rates from 0.2 to 1 microL/min, which corresponds to reactor residence times of 0.24-1.4 min. As a proof of principle, chromatographic separation of model proteins followed by the digestion of specific fractions using these proteolytic enzyme reactors and ESI-MS is demonstrated.

PMID: 19575382 [PubMed - indexed for MEDLINE]