The Analyst · 2009 · 38 citations · 16 references
Peptide-imprinted Polymer MicrospheresEngineeringSmart PolymerBiochemistryPeptide LibraryMip RecognitionPolymer SciencePeptide EngineeringSingle Bi-functional MonomerTarget PeptidesPeptide SynthesisMicro-encapsulationBiomedical EngineeringMolecular ImprintingPrecipitation PolymerizationSitu Chemical ModificationPolymer ChemistryBiomolecular Engineering
A single bi-functional monomer, N,O-bismethacryloyl ethanolamine (NOBE), was used in precipitation polymerization system to synthesize molecularly imprinted polymer (MIP) microspheres. Highly specific binding sites were obtained for N-terminal protected neuropeptides, Boc-Leu-enkephalin and Pyr-Leu-enkephalin. The use of NOBE allowed binding sites to be formed in polymer microspheres that are able to recognize target peptides through the consensus C-terminal sequence. The interesting molecular binding results suggest a new approach for peptide analysis combining in situ chemical modification with MIP recognition under non-aqueous conditions.
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Keiichi Yoshimatsu, Kristina Reimhult, Anatol Krozer et al. · Analytica Chimica Acta · 2006 · 412 citations
Nanoparticles, Different Analytical Applications, Colloidal Material +6
L. Andersson, Ralf R. Müller, George Vlatakis et al. · Proceedings of the National Academy of Sciences · 1995 · 311 citations
Molecular Imprinting Technology, Molecular Pain, Molecular Pharmacology +20