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Titlebook: Design of Polymeric Platforms for Selective Biorecognition; Juan Rodríguez-Hernández,Aitziber L. Cortajarena Book 2015 Springer Internatio

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Book 2015ition processes and will constitute a special part of this book. The authors include detailed information on biological processes, biomolecular screening, biosensing, diagnostic and detection devices, tissue engineering, development of biocompatible materials and biomedical devices.
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From Measuring Rods to DNA Sequencingion, suppression of biomolecule adsorption, control of cellular behavior, and biosensing are provided. The current excellent combination of microfluidic technology and surface chemistry suggests a solid foundation for the development of practical biomedical applications.
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From Medical School to Residencyd specificity for the target analyte, e.g., lectins. Furthermore, spatial integration of enzymatic conversion of the analyte and recognition of the product by a MIP-sublayer allows interference-free measurements of drugs, e.g., aminopyrine.
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Electrochemical Approaches for Molecular Surface Imprinting of Polymers Toward Fully Synthetic Reced specificity for the target analyte, e.g., lectins. Furthermore, spatial integration of enzymatic conversion of the analyte and recognition of the product by a MIP-sublayer allows interference-free measurements of drugs, e.g., aminopyrine.
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aces containing bio recognition moieties and their role on tThis book addresses in an integrated manner all the critical aspects for building the next generation of biorecognition platforms - from biomolecular recognition to surface fabrication. The most recent strategies reported to create surface
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https://doi.org/10.1007/978-94-010-0239-4ve materials is discussed and split into two sections: wet chemical methods and physical “dry” methods. Further substrate functionalization is then described according to the type of primary reactive group present at the surface after initial treatment. Specific features such as reversibility or spatial control are highlighted.
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