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Synthesis and characterization of Au nanoshells with a magnetic core and betaine derivatives

The article describes preparation, characterization and further modification of hybrid magnetic particles (Au nanoshells with a magnetic core (MPs@silica@Au)) by zwitterionic molecules bearing diazonium functional groups. Such hybrid magnetic particles modified by zwitterionic molecules exhibit the...

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Autores principales: Bertok, Tomas, Lorencova, Lenka, Hroncekova, Stefania, Gajdosova, Veronika, Jane, Eduard, Hires, Michal, Kasak, Peter, Kaman, Ondrej, Sokol, Roman, Bella, Vladimir, Eckstein, Anita Andicsova, Mosnacek, Jaroslav, Vikartovska, Alica, Tkac, Jan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6812350/
https://www.ncbi.nlm.nih.gov/pubmed/31667097
http://dx.doi.org/10.1016/j.mex.2019.08.017
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author Bertok, Tomas
Lorencova, Lenka
Hroncekova, Stefania
Gajdosova, Veronika
Jane, Eduard
Hires, Michal
Kasak, Peter
Kaman, Ondrej
Sokol, Roman
Bella, Vladimir
Eckstein, Anita Andicsova
Mosnacek, Jaroslav
Vikartovska, Alica
Tkac, Jan
author_facet Bertok, Tomas
Lorencova, Lenka
Hroncekova, Stefania
Gajdosova, Veronika
Jane, Eduard
Hires, Michal
Kasak, Peter
Kaman, Ondrej
Sokol, Roman
Bella, Vladimir
Eckstein, Anita Andicsova
Mosnacek, Jaroslav
Vikartovska, Alica
Tkac, Jan
author_sort Bertok, Tomas
collection PubMed
description The article describes preparation, characterization and further modification of hybrid magnetic particles (Au nanoshells with a magnetic core (MPs@silica@Au)) by zwitterionic molecules bearing diazonium functional groups. Such hybrid magnetic particles modified by zwitterionic molecules exhibit the following features: • Responsiveness towards external magnetic field applicable for various enrichment strategies due to magnetic core; • Golden outer layer exhibiting free surface plasmons could be used for grafting of zwitterionic molecules via diazonium functionality; • Zwitterionic interface on such particles provides resistivity towards non-specific protein binding; and at the same time such interface was applied for immobilization of antibodies against prostate specific antigen (PSA) applied for selective enrichment of PSA from serum samples with subsequent electrochemical assays. The approach presented here using hybrid magnetic particles can be easily applied for immobilization of antibodies using a highly robust surface patterning protocols i.e. by formation of a self-assembled monolayer with delivery of functional groups on the outer surface of magnetic particles. Hybrid magnetic particles with immobilized antibodies are applied for highly efficient and quick separation of protein of interest i.e. PSA from complex sample. Finally, hybrid magnetic particles with “fished-out” protein molecules could be incubated with lectins to form a sandwich configuration for glycoprofiling of PSA.
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spelling pubmed-68123502019-10-30 Synthesis and characterization of Au nanoshells with a magnetic core and betaine derivatives Bertok, Tomas Lorencova, Lenka Hroncekova, Stefania Gajdosova, Veronika Jane, Eduard Hires, Michal Kasak, Peter Kaman, Ondrej Sokol, Roman Bella, Vladimir Eckstein, Anita Andicsova Mosnacek, Jaroslav Vikartovska, Alica Tkac, Jan MethodsX Method Article The article describes preparation, characterization and further modification of hybrid magnetic particles (Au nanoshells with a magnetic core (MPs@silica@Au)) by zwitterionic molecules bearing diazonium functional groups. Such hybrid magnetic particles modified by zwitterionic molecules exhibit the following features: • Responsiveness towards external magnetic field applicable for various enrichment strategies due to magnetic core; • Golden outer layer exhibiting free surface plasmons could be used for grafting of zwitterionic molecules via diazonium functionality; • Zwitterionic interface on such particles provides resistivity towards non-specific protein binding; and at the same time such interface was applied for immobilization of antibodies against prostate specific antigen (PSA) applied for selective enrichment of PSA from serum samples with subsequent electrochemical assays. The approach presented here using hybrid magnetic particles can be easily applied for immobilization of antibodies using a highly robust surface patterning protocols i.e. by formation of a self-assembled monolayer with delivery of functional groups on the outer surface of magnetic particles. Hybrid magnetic particles with immobilized antibodies are applied for highly efficient and quick separation of protein of interest i.e. PSA from complex sample. Finally, hybrid magnetic particles with “fished-out” protein molecules could be incubated with lectins to form a sandwich configuration for glycoprofiling of PSA. Elsevier 2019-09-11 /pmc/articles/PMC6812350/ /pubmed/31667097 http://dx.doi.org/10.1016/j.mex.2019.08.017 Text en © 2019 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Method Article
Bertok, Tomas
Lorencova, Lenka
Hroncekova, Stefania
Gajdosova, Veronika
Jane, Eduard
Hires, Michal
Kasak, Peter
Kaman, Ondrej
Sokol, Roman
Bella, Vladimir
Eckstein, Anita Andicsova
Mosnacek, Jaroslav
Vikartovska, Alica
Tkac, Jan
Synthesis and characterization of Au nanoshells with a magnetic core and betaine derivatives
title Synthesis and characterization of Au nanoshells with a magnetic core and betaine derivatives
title_full Synthesis and characterization of Au nanoshells with a magnetic core and betaine derivatives
title_fullStr Synthesis and characterization of Au nanoshells with a magnetic core and betaine derivatives
title_full_unstemmed Synthesis and characterization of Au nanoshells with a magnetic core and betaine derivatives
title_short Synthesis and characterization of Au nanoshells with a magnetic core and betaine derivatives
title_sort synthesis and characterization of au nanoshells with a magnetic core and betaine derivatives
topic Method Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6812350/
https://www.ncbi.nlm.nih.gov/pubmed/31667097
http://dx.doi.org/10.1016/j.mex.2019.08.017
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