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Electrosynthesized MIPs for transferrin

  • Molecularly imprinted polymer (MP) nanofilrns for transferrin (Trf) have been synthesized on gold surfaces by electro-polymerizing the functional monomer scopoletin in the presence of the protein target or around pre-adsorbed Trf. As determined by atomic force microscopy (AFM) the film thickness was comparable with the molecular dimension of the target. The target (re)binding properties of the electro-synthesized MIP films was evaluated by cyclic voltammetry (CV) and square wave voltammetry (SWV) through the target-binding induced permeability changes of the MIP nanofilms to the ferricyanide redox marker, as well as by surface plasmon resonance (SPR) and surface enhanced infrared absorption spectroscopy (SEIRAS) of the immobilized protein molecules. For Trf a linear concentration dependence in the lower micromolar range and an imprinting factor of similar to 5 was obtained by SWV and SPR. Furthermore, non-target proteins including the iron-free apo-Trf were discriminated by pronounced size and shape specificity. Whilst it is generallyMolecularly imprinted polymer (MP) nanofilrns for transferrin (Trf) have been synthesized on gold surfaces by electro-polymerizing the functional monomer scopoletin in the presence of the protein target or around pre-adsorbed Trf. As determined by atomic force microscopy (AFM) the film thickness was comparable with the molecular dimension of the target. The target (re)binding properties of the electro-synthesized MIP films was evaluated by cyclic voltammetry (CV) and square wave voltammetry (SWV) through the target-binding induced permeability changes of the MIP nanofilms to the ferricyanide redox marker, as well as by surface plasmon resonance (SPR) and surface enhanced infrared absorption spectroscopy (SEIRAS) of the immobilized protein molecules. For Trf a linear concentration dependence in the lower micromolar range and an imprinting factor of similar to 5 was obtained by SWV and SPR. Furthermore, non-target proteins including the iron-free apo-Trf were discriminated by pronounced size and shape specificity. Whilst it is generally assumed that the rebinding of the target or of cross-reacting proteins exclusively takes place at the polymer here we considered also the interaction of the protein molecules with the underlying gold transducers. We demonstrate by SWV that adsorption of proteins suppresses the signal of the redox marker even at the bare gold surface and by SEIRAS that the treatment of the MIP with proteinase K or NaOH only partially removes the target protein. Therefore, we conclude that when interpreting binding of proteins to directly MIP-covered gold electrodes the interactions between the protein and the gold surface should also be considered.show moreshow less

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Author details:Xiaorong ZhangGND, Aysu YarmanORCiDGND, Julia Erdossy, Sagie Katz, Ingo Zebger, Katharina J. JetzschmannORCiD, Zeynep Altintas, Ulla WollenbergerORCiDGND, Robert E. GyurcsanyiORCiD, Frieder W. SchellerORCiDGND
DOI:https://doi.org/10.1016/j.bios.2018.01.011
ISSN:0956-5663
ISSN:1873-4235
Pubmed ID:https://pubmed.ncbi.nlm.nih.gov/29351867
Title of parent work (English):Biosensors and bioelectronics : the principal international journal devoted to research, design development and application of biosensors and bioelectronics
Subtitle (English):Plastibodies or nano-filters?
Publisher:Elsevier
Place of publishing:Oxford
Publication type:Article
Language:English
Date of first publication:2018/01/09
Publication year:2018
Release date:2021/12/01
Tag:Molecularly imprinted polymer; Protein adsorption; Redox marker; Scopoletin; Transferrin
Volume:105
Number of pages:7
First page:29
Last Page:35
Funding institution:ERA-Chemistry [61133, OTKANN117637]; Cluster of Excellence [EXC 314]; Lendulet program of the Hungarian Academy of Sciences [LP 2013 - 63]
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Biochemie und Biologie
DDC classification:5 Naturwissenschaften und Mathematik / 57 Biowissenschaften; Biologie / 570 Biowissenschaften; Biologie
Peer review:Referiert
Publishing method:Open Access / Green Open-Access
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