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  • 1. Alexander, C
    et al.
    Andersson, Håkan S.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Andersson, L I
    Ansell, R I
    Kirsch, Nicole
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Nicholls, Ian A.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    O'Mahony, John
    Whitcombe, M J
    Molecular imprinting science and technology: a survey of the literature for the years up to and including 20032006In: Journal of molecular recognition, Vol. 19, no 2, p. 106-180Article in journal (Refereed)
  • 2.
    Karlsson, Björn C. G.
    et al.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    O'Mahony, John
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Karlsson, Jesper G.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Bengtsson, Helen
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Eriksson, Leif A
    Nicholls, Ian A.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Structure and Dynamics of Monomer-Template Complexation: An Explanation for Molecularly Imprinted Polymer Recognition Site Heterogeneity2009In: Journal of the American Chemical Society, ISSN 0002-7863, E-ISSN 1520-5126, Vol. 131, no 37, p. 13297-13304Article in journal (Refereed)
    Abstract [en]

    We here present the first simulation of a complete molecularly imprinted polymer prepolymerization system. Molecular dynamics studies were performed for a system comprising a total of 1199 discrete molecules, replicating the components and concentrations employed in the corresponding polymer synthesis. The observed interactions correlate well with results obtained from (1)H NMR spectroscopic studies. Comparison with simulations performed in the absence of cross-linking agent (ethylene dimethacrylate) demonstrated its significance in the formation of ligand recognition sites. Moreover, the influence of events such as template-template (bupivacaine) and monomer-monomer (methacrylic acid) self-association, porogen-template interactions, and template conformational variability was revealed. The template recognition capacity of the modeled polymer system was verified by synthesis of imprinted and reference polymers and subsequent radioligand binding Analysis. Collectively, through a series of statistical analyses of molecular trajectories in conjunction with spectroscopic data it was demonstrated that an ensemble of complex structures is present in the prepolymerization mixture and that this diversity is the basis for the binding site heterogeneity observed in molecularly imprinted polymers (MIPs) prepared using the noncovalent strategy.

  • 3.
    Karlsson, Björn C. G.
    et al.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    O'Mahony, John
    Karlsson, Jesper G.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Bengtsson, Helen
    Eriksson, Leif A
    Nicholls, Ian A.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Structure and dynamics of monomer-template complexation: can molecularly imprinted polymer recognition site heterogeneity be explained?2009Conference paper (Refereed)
  • 4.
    Karlsson, Björn
    et al.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    O'Mahony, John
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Karlsson, Jesper G
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Bengtsson, Helen
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Eriksson, Leif A
    Nicholls, Ian Alan
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Structure and dynamics of monomer-template complexation: an explanation for molecularly imprinted polymer recognition site heterogeneity2008Conference paper (Other academic)
  • 5. O'Mahony, John
    et al.
    Karlsson, Björn C. G.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Mizaikoff, B
    Nicholls, Ian A.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Correlated theoretical, spectroscopic and X-ray crystallographic studies of a non-covalent molecularly imprinted polymerisation system2007In: The Analyst, ISSN 0003-2654, E-ISSN 1364-5528, Vol. 132, p. 1161-1168Article in journal (Refereed)
  • 6. O'MAHONY, JOHN
    et al.
    Karlsson, Björn
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Mizaikoff, B
    Nicholls, Ian Alan
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Prior to polymerisation: Insights from correlated theoretical, solution phase and solid state studies2006Conference paper (Refereed)
  • 7. O'MAHONY, JOHN
    et al.
    Karlsson, Björn
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Nicholls, Ian Alan
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Structure and dynamics of template-monomer complexation: An explanation for recognition site heterogeneity2006Conference paper (Refereed)
  • 8.
    Torres, Nuria Albet
    et al.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    O'MAHONY, JOHN
    Charlton, Christy
    Balaz, Martina
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Lisboa, P
    Aastrup, Teodor
    Månsson, Alf
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Nicholls, Ian Alan
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Mode of Heavy Meromyosin Adsorption and Motor Function Correlated with Surface Hydrophobicity and Charge2007In: Langmuir, ISSN 0743-7463, E-ISSN 1520-5827, Vol. 23, p. 11147-11156Article in journal (Refereed)
1 - 8 of 8
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