Titanium dioxide nanoparticle coating of polymethacrylate-based chromatographic monoliths for phosphopetides enrichment.

Anal Chim Acta

BIA Separations d.o.o., Mirce 21, SI-5270 Ajdovščina, Slovenia; The Centre of Excellence for Biosensors, Instrumentation and Process Control - COBIK, Tovarniška 26, SI-5270 Ajdovščina, Slovenia. Electronic address:

Published: October 2016

Metal oxide affinity chromatography has been one of the approaches for specific enrichment of phosphopeptides from complex samples, based on specific phosphopeptide adsorption forming bidentate chelates between phosphate anions and the surface of a metal oxide, such as TiO, ZrO, FeO, and AlO. Due to convective mass transfer, flow-independent resolution and high dynamic binding capacity, monolith chromatographic supports have become important in studies where high resolution and selectivity are required. Here, we report the first synthesis and characterization of immobilisation of rutile TiO nanoparticles onto organic monolithic chromatographic support (CIM-OH-TiO). We demonstrate the specificity of CIM-OH-TiO column for enrichment of phosphopeptides by studying chromatographic separation of model phosphorylated and nonphosphorylated peptides as well as proving the phosphopeptide enrichment of digested bovine α-casein. The work described here opens the possibility for a faster, more selective enrichment of phosphopeptides from biological samples that will enable future advances in studying protein phosphorylation.

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http://dx.doi.org/10.1016/j.aca.2016.08.044DOI Listing

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