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  4. Kinetics of Antibody Binding to Membranes of Living Bacteria Measured by a Photonic Crystal-Based Biosensor
 
research article

Kinetics of Antibody Binding to Membranes of Living Bacteria Measured by a Photonic Crystal-Based Biosensor

Rostova, Ekaterina  
•
Ben Adiba, Carine
•
Dietler, Giovanni  
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2016
Biosensors-Basel

Optical biosensors based on photonic crystal surface waves (PC SWs) offer a possibility to study binding interactions with living cells, overcoming the limitation of rather small evanescent field penetration depth into a sample medium that is characteristic for typical optical biosensors. Besides this, simultaneous excitation of s-and p-polarized surface waves with different penetration depths is realized here, permitting unambiguous separation of surface and volume contributions to the measured signal. PC-based biosensors do not require a bulk signal correction, compared to widely used surface plasmon resonance-based devices. We developed a chitosan-based protocol of PC chip functionalization for bacterial attachment and performed experiments on antibody binding to living bacteria measured in real time by the PCSW-based biosensor. Data analysis reveals specific binding and gives the value of the dissociation constant for monoclonal antibodies (IgG2b) against bacterial lipopolysaccharides equal to K-D = 6.2 +/- 3.4 nM. To our knowledge, this is a first demonstration of antibody-binding kinetics to living bacteria by a label-free optical biosensor.

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Type
research article
DOI
10.3390/bios6040052
Web of Science ID

WOS:000390990100004

Author(s)
Rostova, Ekaterina  
Ben Adiba, Carine
Dietler, Giovanni  
Sekatskii, Sergey K.  
Date Issued

2016

Publisher

Mdpi Ag

Published in
Biosensors-Basel
Volume

6

Issue

4

Start page

52

Subjects

photonic crystal

•

label-free biosensor

•

bacteria

•

binding kinetics

•

antibody

•

ligand-receptor interaction

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LPMV  
Available on Infoscience
February 17, 2017
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/134612
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