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Nanosphere Lithography as a Versatile Method to Generate Surface‐Imprinted Polymer Films for Selective Protein Recognition

Identifieur interne : 001337 ( Istex/Corpus ); précédent : 001336; suivant : 001338

Nanosphere Lithography as a Versatile Method to Generate Surface‐Imprinted Polymer Films for Selective Protein Recognition

Auteurs : Júlia Bognár ; Júlia Sz Cs ; Zsanett Dork ; Viola Horváth ; R Bert E. Gyurcsányi

Source :

RBID : ISTEX:7C997DB092E3D292DBA571E8F3B4521C6DF234E9

English descriptors

Abstract

A versatile approach based on nanosphere lithography is proposed to generate surface‐imprinted polymers for selective protein recognition. A layer of 750 nm diameter latex bead‐protein conjugate is deposited onto the surface of gold‐coated quartz crystals followed by the electrosynthesis of a poly(3,4‐ethylenedioxythiophene)/poly(styrenesulfonate) (PEDOT/PSS) film with thicknesses on the order of the bead radius. The removal of the polymer bead‐protein conjugates, facilitated by using a cleavable protein‐nanosphere linkage is shown to result in 2D arrays of periodic complementary size cavities. Here it is demonstrated by nanogravimetric measurements that the imprinting proceeds further at molecular level and the protein (avidin) coating of the beads generates selective recognition sites for avidin on the surface of the PEDOT/PSS film. The binding capacity of such surface‐imprinted polymer films is ca. 6.5 times higher than that of films imprinted with unmodified beads. They also exhibit excellent selectivity against analogues of avidin, i.e., extravidin, streptavidin, and neutravidin, the latter being in fact undetectable. This methodology, if coupled with properly oriented conjugation of the macromolecular template to the nanoparticles, offers the possibility of site‐directed imprinting.
A versatile approach based on nanosphere lithography is proposed to generate surface‐imprinted polymers for selective protein recognition. Nanogravimetric measurements demonstrate that the protein (avidin) coating of the nanospheres generates selective recognition sites for avidin on the surface of the PEDOT/PSS film. This methodology coupled with oriented conjugation of the macromolecular template to the nanospheres offers the possibility of site‐directed imprinting.

Url:
DOI: 10.1002/adfm.201300113

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<title>Nanosphere Lithography as a Versatile Method to Generate Surface‐Imprinted Polymer Films for Selective Protein Recognition</title>
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<name type="personal">
<namePart type="given">Júlia</namePart>
<namePart type="family">Bognár</namePart>
<affiliation>Department of Inorganic and Analytical Chemistry, Budapest University of Technology and Economics, Szt. Gellért tér 4, Budapest, H‐1111, Hungary</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
</name>
<name type="personal">
<namePart type="given">Júlia</namePart>
<namePart type="family">Szűcs</namePart>
<affiliation>Research Group for Technical Analytical Chemistry, Hungarian Academy of Sciences, Szt. Gellért tér 4, Budapest, H‐1111, Hungary</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
</name>
<name type="personal">
<namePart type="given">Zsanett</namePart>
<namePart type="family">Dorkó</namePart>
<affiliation>Department of Inorganic and Analytical Chemistry, Budapest University of Technology and Economics, Szt. Gellért tér 4, Budapest, H‐1111, Hungary</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
</name>
<name type="personal">
<namePart type="given">Viola</namePart>
<namePart type="family">Horváth</namePart>
<affiliation>Research Group for Technical Analytical Chemistry, Hungarian Academy of Sciences, Szt. Gellért tér 4, Budapest, H‐1111, Hungary</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
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<name type="personal">
<namePart type="given">Róbert E.</namePart>
<namePart type="family">Gyurcsányi</namePart>
<affiliation>Department of Inorganic and Analytical Chemistry, Budapest University of Technology and Economics, Szt. Gellért tér 4, Budapest, H‐1111, Hungary</affiliation>
<affiliation>Research Group for Technical Analytical Chemistry, Hungarian Academy of Sciences, Szt. Gellért tér 4, Budapest, H‐1111, Hungary</affiliation>
<affiliation>E-mail: robertgy@mail.bme.hu</affiliation>
<affiliation>Correspondence address: Department of Inorganic and Analytical Chemistry, Budapest University of Technology and Economics, Szt. Gellért tér 4, Budapest, H‐1111, Hungary.</affiliation>
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</role>
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<publisher>WILEY‐VCH Verlag</publisher>
<place>
<placeTerm type="text">Weinheim</placeTerm>
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<dateIssued encoding="w3cdtf">2013-10-04</dateIssued>
<dateCaptured encoding="w3cdtf">2013-01-10</dateCaptured>
<copyrightDate encoding="w3cdtf">2013</copyrightDate>
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<languageTerm type="code" authority="iso639-2b">eng</languageTerm>
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<extent unit="figures">6</extent>
<extent unit="references">36</extent>
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<abstract lang="en">A versatile approach based on nanosphere lithography is proposed to generate surface‐imprinted polymers for selective protein recognition. A layer of 750 nm diameter latex bead‐protein conjugate is deposited onto the surface of gold‐coated quartz crystals followed by the electrosynthesis of a poly(3,4‐ethylenedioxythiophene)/poly(styrenesulfonate) (PEDOT/PSS) film with thicknesses on the order of the bead radius. The removal of the polymer bead‐protein conjugates, facilitated by using a cleavable protein‐nanosphere linkage is shown to result in 2D arrays of periodic complementary size cavities. Here it is demonstrated by nanogravimetric measurements that the imprinting proceeds further at molecular level and the protein (avidin) coating of the beads generates selective recognition sites for avidin on the surface of the PEDOT/PSS film. The binding capacity of such surface‐imprinted polymer films is ca. 6.5 times higher than that of films imprinted with unmodified beads. They also exhibit excellent selectivity against analogues of avidin, i.e., extravidin, streptavidin, and neutravidin, the latter being in fact undetectable. This methodology, if coupled with properly oriented conjugation of the macromolecular template to the nanoparticles, offers the possibility of site‐directed imprinting.</abstract>
<abstract type="graphical" lang="en">A versatile approach based on nanosphere lithography is proposed to generate surface‐imprinted polymers for selective protein recognition. Nanogravimetric measurements demonstrate that the protein (avidin) coating of the nanospheres generates selective recognition sites for avidin on the surface of the PEDOT/PSS film. This methodology coupled with oriented conjugation of the macromolecular template to the nanospheres offers the possibility of site‐directed imprinting.</abstract>
<subject lang="en">
<genre>keywords</genre>
<topic>molecularly imprinted polymers</topic>
<topic>surface imprinting</topic>
<topic>protein recognition</topic>
<topic>nanosphere lithography</topic>
<topic>PEDOT/PSS</topic>
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<note type="content"> As a service to our authors and readers, this journal provides supporting information supplied by the authors. Such materials are peer reviewed and may be re‐organized for online delivery, but are not copy‐edited or typeset. Technical support issues arising from supporting information (other than missing files) should be addressed to the authors.Supporting Info Item: suppl - </note>
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