Literature DB >> 11605834

Characterization of molecularly imprinted polymers with the Langmuir-Freundlich isotherm.

R J Umpleby1, S C Baxter, Y Chen, R N Shah, K D Shimizu.   

Abstract

The majority of binding models that have been applied to molecularly imprinted polymers (MIPs) have been homogeneous models. MIPs, on the other hand, are heterogeneous materials containing binding sites with a wide array of binding affinities and selectivities. Demonstrated is that the binding behavior of MIPs can be accurately modeled by the heterogeneous Langmuir-Freundlich (LF) isotherm. The applicability of the LF isotherm to MIPs was demonstrated using five representative MIPs from the literature, including both homogeneous and heterogeneous MIPs. Previously, such comparisons required the use of several different binding models and analyses, including the Langmuir model, the Freundlich model, and numerical approximation techniques. In contrast, the LF model enabled direct comparisons of the binding characteristics of MIPs that have very different underlying distributions and were measured under different conditions. The binding parameters can be calculated directly using the LF fitting coefficients that yield a measure of the total number of binding sites, mean binding affinity, and heterogeneity. Alternatively, solution of the Langmuir adsorption integral for the LF model enabled direct calculation of the corresponding affinity spectrum from the LF fitting coefficients from a simple algebraic expression, yielding a measure of the number of binding sites with respect to association constant Finally, the ability of the LF isotherm to model MIPs suggests that a unimodal heterogeneous distribution is an accurate approximation of the distribution found in homogeneous and heterogeneous MIPs.

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Year:  2001        PMID: 11605834     DOI: 10.1021/ac0105686

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  35 in total

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Review 2.  Magnetic-molecularly imprinted polymers in electrochemical sensors and biosensors.

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4.  Affinity purification of multifunctional polymer nanoparticles.

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5.  Validation of computational approach to study monomer selectivity toward the template Gallic acid for rational molecularly imprinted polymer design.

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7.  Core-shell magnetite-silica dithiocarbamate-derivatised particles achieve the Water Framework Directive quality criteria for mercury in surface waters.

Authors:  C B Lopes; P Figueira; D S Tavares; Z Lin; A L Daniel-da-Silva; A C Duarte; J Rocha; T Trindade; E Pereira
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8.  Antibody-like Biorecognition Sites for Proteins from Surface Imprinting on Nanoparticles.

Authors:  Snehasis Bhakta; Mohammad Saiful Islam Seraji; Steven L Suib; James F Rusling
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9.  Comparative Study on Lead and Copper Biosorption Using Three Bioproducts from Edible Mushrooms Residues.

Authors:  Nathália R C M Castanho; Renan A de Oliveira; Bruno L Batista; Bruna M Freire; Camila Lange; André M Lopes; Angela F Jozala; Denise Grotto
Journal:  J Fungi (Basel)       Date:  2021-05-31

10.  Recognition properties and competitive assays of a dual dopamine/serotonin selective molecularly imprinted polymer.

Authors:  Roongnapa Suedee; Vatcharee Seechamnanturakit; Acharee Suksuwan; Bhutorn Canyuk
Journal:  Int J Mol Sci       Date:  2008-11-26       Impact factor: 6.208

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