Label-Enhanced Surface Plasmon Resonance: A New Concept for Improved Performance in Optical Biosensor Analysis
Surface plasmon resonance (SPR) is a well-established optical biosensor technology with many proven applications in the study of molecular interactions as well as in surface and material science. SPR is usually applied in the label-free mode which may be advantageous in cases where the presence of a...
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doaj-2075e94654b34cf49c5037bf1e39aef22020-11-24T21:23:20ZengMDPI AGSensors1424-82202013-11-011311153481536310.3390/s131115348Label-Enhanced Surface Plasmon Resonance: A New Concept for Improved Performance in Optical Biosensor AnalysisNiko GranqvistTapani ViitalaAnders HanningLars EngJussi TuppurainenSurface plasmon resonance (SPR) is a well-established optical biosensor technology with many proven applications in the study of molecular interactions as well as in surface and material science. SPR is usually applied in the label-free mode which may be advantageous in cases where the presence of a label may potentially interfere with the studied interactions per se. However, the fundamental challenges of label-free SPR in terms of limited sensitivity and specificity are well known. Here we present a new concept called label-enhanced SPR, which is based on utilizing strongly absorbing dye molecules in combination with the evaluation of the full shape of the SPR curve, whereby the sensitivity as well as the specificity of SPR is significantly improved. The performance of the new label-enhanced SPR method was demonstrated by two simple model assays: a small molecule assay and a DNA hybridization assay. The small molecule assay was used to demonstrate the sensitivity enhancement of the method, and how competitive assays can be used for relative affinity determination. The DNA assay was used to demonstrate the selectivity of the assay, and the capabilities in eliminating noise from bulk liquid composition variations.http://www.mdpi.com/1424-8220/13/11/15348biosensorsurface plasmon resonanceSPRlabelsensitivityspecificity |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Niko Granqvist Tapani Viitala Anders Hanning Lars Eng Jussi Tuppurainen |
spellingShingle |
Niko Granqvist Tapani Viitala Anders Hanning Lars Eng Jussi Tuppurainen Label-Enhanced Surface Plasmon Resonance: A New Concept for Improved Performance in Optical Biosensor Analysis Sensors biosensor surface plasmon resonance SPR label sensitivity specificity |
author_facet |
Niko Granqvist Tapani Viitala Anders Hanning Lars Eng Jussi Tuppurainen |
author_sort |
Niko Granqvist |
title |
Label-Enhanced Surface Plasmon Resonance: A New Concept for Improved Performance in Optical Biosensor Analysis |
title_short |
Label-Enhanced Surface Plasmon Resonance: A New Concept for Improved Performance in Optical Biosensor Analysis |
title_full |
Label-Enhanced Surface Plasmon Resonance: A New Concept for Improved Performance in Optical Biosensor Analysis |
title_fullStr |
Label-Enhanced Surface Plasmon Resonance: A New Concept for Improved Performance in Optical Biosensor Analysis |
title_full_unstemmed |
Label-Enhanced Surface Plasmon Resonance: A New Concept for Improved Performance in Optical Biosensor Analysis |
title_sort |
label-enhanced surface plasmon resonance: a new concept for improved performance in optical biosensor analysis |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2013-11-01 |
description |
Surface plasmon resonance (SPR) is a well-established optical biosensor technology with many proven applications in the study of molecular interactions as well as in surface and material science. SPR is usually applied in the label-free mode which may be advantageous in cases where the presence of a label may potentially interfere with the studied interactions per se. However, the fundamental challenges of label-free SPR in terms of limited sensitivity and specificity are well known. Here we present a new concept called label-enhanced SPR, which is based on utilizing strongly absorbing dye molecules in combination with the evaluation of the full shape of the SPR curve, whereby the sensitivity as well as the specificity of SPR is significantly improved. The performance of the new label-enhanced SPR method was demonstrated by two simple model assays: a small molecule assay and a DNA hybridization assay. The small molecule assay was used to demonstrate the sensitivity enhancement of the method, and how competitive assays can be used for relative affinity determination. The DNA assay was used to demonstrate the selectivity of the assay, and the capabilities in eliminating noise from bulk liquid composition variations. |
topic |
biosensor surface plasmon resonance SPR label sensitivity specificity |
url |
http://www.mdpi.com/1424-8220/13/11/15348 |
work_keys_str_mv |
AT nikogranqvist labelenhancedsurfaceplasmonresonanceanewconceptforimprovedperformanceinopticalbiosensoranalysis AT tapaniviitala labelenhancedsurfaceplasmonresonanceanewconceptforimprovedperformanceinopticalbiosensoranalysis AT andershanning labelenhancedsurfaceplasmonresonanceanewconceptforimprovedperformanceinopticalbiosensoranalysis AT larseng labelenhancedsurfaceplasmonresonanceanewconceptforimprovedperformanceinopticalbiosensoranalysis AT jussituppurainen labelenhancedsurfaceplasmonresonanceanewconceptforimprovedperformanceinopticalbiosensoranalysis |
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1725992105209233408 |