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Biosensors and Biodetection

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Cover of 'Biosensors and Biodetection'

Table of Contents

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    Book Overview
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    Chapter 1 Localized Surface Plasmon Resonance (LSPR)-Coupled Fiber-Optic Nanoprobe for the Detection of Protein Biomarkers
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    Chapter 2 Ultra-Sensitive Surface Plasmon Resonance Detection by Colocalized 3D Plasmonic Nanogap Arrays
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    Chapter 3 Two-Dimensional Surface Plasmon Resonance Imaging System for Cellular Analysis
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    Chapter 4 Immunosensing with Near-Infrared Plasmonic Optical Fiber Gratings
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    Chapter 5 Biosensing Based on Magneto-Optical Surface Plasmon Resonance
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    Chapter 6 Nanoplasmonic Biosensor Using Localized Surface Plasmon Resonance Spectroscopy for Biochemical Detection
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    Chapter 7 Plasmonics-Based Detection of Virus Using Sialic Acid Functionalized Gold Nanoparticles
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    Chapter 8 MicroRNA Biosensing with Two-Dimensional Surface Plasmon Resonance Imaging
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    Chapter 9 Gold Nanorod Array Biochip for Label-Free, Multiplexed Biological Detection
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    Chapter 10 Resonant Waveguide Grating Imager for Single Cell Monitoring of the Invasion of 3D Speheroid Cancer Cells Through Matrigel
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    Chapter 11 Label-Free Biosensors Based on Bimodal Waveguide (BiMW) Interferometers
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    Chapter 12 DNA-Directed Antibody Immobilization for Robust Protein Microarrays: Application to Single Particle Detection ‘DNA-Directed Antibody Immobilization
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    Chapter 13 Reflectometric Interference Spectroscopy
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    Chapter 14 Hypermulticolor Detector for Quantum-Antibody Based Concurrent Detection of Intracellular Markers for HIV Diagnosis
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    Chapter 15 Low-Cost Charged-Coupled Device (CCD) Based Detectors for Shiga Toxins Activity Analysis
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    Chapter 16 Smartphone-Enabled Detection Strategies for Portable PCR–Based Diagnostics
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    Chapter 17 Streak Imaging Flow Cytometer for Rare Cell Analysis
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    Chapter 18 Rapid Detection of Microbial Contamination Using a Microfluidic Device
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    Chapter 19 Resonance Energy Transfer-Based Nucleic Acid Hybridization Assays on Paper-Based Platforms Using Emissive Nanoparticles as Donors
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    Chapter 20 Enhanced Performance of Colorimetric Biosensing on Paper Microfluidic Platforms Through Chemical Modification and Incorporation of Nanoparticles
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    Chapter 21 A Smartphone-Based Colorimetric Reader for Human C-Reactive Protein Immunoassay
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    Chapter 22 A Novel Colorimetric PCR-Based Biosensor for Detection and Quantification of Hepatitis B Virus
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    Chapter 23 CCD Camera Detection of HIV Infection
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    Chapter 24 “Dipstick” Colorimetric Detection of Metal Ions Based on Immobilization of DNAzyme and Gold Nanoparticles onto a Lateral Flow Device
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    Chapter 25 Liposome-Enhanced Lateral-Flow Assays for Clinical Analyses
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    Chapter 26 Development of Dual Quantitative Lateral Flow Immunoassay for the Detection of Mycotoxins
Attention for Chapter 4: Immunosensing with Near-Infrared Plasmonic Optical Fiber Gratings
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Chapter title
Immunosensing with Near-Infrared Plasmonic Optical Fiber Gratings
Chapter number 4
Book title
Biosensors and Biodetection
Published in
Methods in molecular biology, March 2017
DOI 10.1007/978-1-4939-6848-0_4
Pubmed ID
Book ISBNs
978-1-4939-6846-6, 978-1-4939-6848-0
Authors

Christophe Caucheteur, Clotilde Ribaut, Viera Malachovska, Ruddy Wattiez

Editors

Avraham Rasooly, Ben Prickril

Abstract

Surface Plasmon resonance (SPR) optical fiber biosensors constitute a miniaturized counterpart to the bulky prism configuration and offer remote operation in very small volumes of analyte. They are a cost-effective and relatively straightforward technique to yield in situ (or even possibly in vivo) molecular detection. They are usually obtained from a gold-coated fiber segment for which the core-guided light is brought into contact with the surrounding medium, either by etching (or side-polishing) or by using grating coupling. Recently, SPR generation was achieved in gold-coated tilted fiber Bragg gratings (TFBGs). These sensors probe the surrounding medium with near-infrared narrowband resonances, which enhances both the penetration depth of the evanescent field in the external medium and the wavelength resolution of the interrogation. They constitute the unique configuration able to probe all the fiber cladding modes individually, with high Q-factors. We use these unique spectral features in our work to sense proteins and extra-cellular membrane receptors that are both overexpressed in cancerous tissues. Impressive limit of detection (LOD) and sensitivity are reported, which paves the way for the further use of such immunosensors for cancer diagnosis.

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Mendeley readers

The data shown below were compiled from readership statistics for 4 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 4 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 1 25%
Researcher 1 25%
Unknown 2 50%
Readers by discipline Count As %
Materials Science 1 25%
Engineering 1 25%
Unknown 2 50%