Novel photonic technique creates micrometer resolution protein arrays and provides a new approach to coupling of genes, peptide hormones and drugs to nanoparticle carriers

We demonstrate that ultraviolet light can be used to make sterically oriented covalent immobilization of a large variety of protein molecules onto either thiolated quartz, gold or silicon. The reaction mechanism behind the reported new technology involves light-induced breakage of disulphide bridges...

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Veröffentlicht in:Applied surface science 2007-07, Vol.253 (19), p.8125-8129
Hauptverfasser: Duroux, M., Duroux, L., Neves-Petersen, M.T., Skovsen, E., Petersen, S.B.
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container_end_page 8129
container_issue 19
container_start_page 8125
container_title Applied surface science
container_volume 253
creator Duroux, M.
Duroux, L.
Neves-Petersen, M.T.
Skovsen, E.
Petersen, S.B.
description We demonstrate that ultraviolet light can be used to make sterically oriented covalent immobilization of a large variety of protein molecules onto either thiolated quartz, gold or silicon. The reaction mechanism behind the reported new technology involves light-induced breakage of disulphide bridges in proteins upon UV illumination of nearby aromatic amino acids, resulting in the formation of free, reactive thiol groups that will form covalent bonds with thiol reactive surfaces. In general, the protein molecules retain their function. The size of the immobilization spot is limited to the focal point of illumination being as small as a few micrometers. This new technology allows for dense packing of different bio-molecules on a surface, allowing the creation of multi-potent functionalised new materials, such as nano-biosensors. We have developed the necessary technology for preparing large protein arrays of enzymes and fragments of monoclonal antibodies. Dedicated image processing software has been developed for making quality assessment of the protein arrays. This novel technology is ideal to couple drugs and other bio-molecules to nanoparticles which can be used as carriers into cells for therapeutic purposes.
doi_str_mv 10.1016/j.apsusc.2007.02.131
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subjects Condensed matter: electronic structure, electrical, magnetic, and optical properties
Condensed matter: structure, mechanical and thermal properties
Cross-disciplinary physics: materials science
rheology
Disulphide bridges
Exact sciences and technology
Light-assisted protein immobilization
Micro-arrays
Micro-dispensing
Nanoparticles
Physics
UV light
title Novel photonic technique creates micrometer resolution protein arrays and provides a new approach to coupling of genes, peptide hormones and drugs to nanoparticle carriers
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