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2007 | OriginalPaper | Buchkapitel

A Fiber Optic Immunosensor for Rapid Bacteria Determination

verfasst von : M. Taniguchi, E. Akai, T. Koshida, K. Hibi, H. Kudo, K. Otsuka, H. Saito, K. Yano, H. Endo, Kohji Mitsubayashi

Erschienen in: 3rd Kuala Lumpur International Conference on Biomedical Engineering 2006

Verlag: Springer Berlin Heidelberg

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Attention is currently focused on fiber optic immunosensor as sensitive and nearly real time protein detector. This kind of sensor is expected to detect bacteria in foods directly by dipping the thin optical fiber dominant area into foods. In the study, an antibody based fiber optic immunosensor to detect

Escherichia coli

O157:H7 (

E.coli

O157:H7) was constructed. The principle of the sensor was a sandwich immunoassay on the optical fiber surface. A goat polyclonal antibody was first immobilized on polystyrene optical fiber.

E.coli

O157:H7 and a cyanine 5 (Cy5) -labeled goat polyclonal antibody were used to generate a specific fluorescent signal. An excitation light (λ = 635 nm) was illuminated into the optical fiber, and the Cy5 florescent molecules near the optical fiber (approximately 100 nm) were excited by evanescent wave emitted from the optical fiber. The fluorescent light (λ = 670 nm) collected by the optical fiber was measured using a photodiode. The measurement range for

E.coli

O157:H7 diluted with phosphate buffer (PB) was from 1×10

2

to 1×10

7

cells/ml. This method could also detect

E.coli

O157:H7 in milk artificially inoculated with 1×10

2

to 1×10

7

cells/ml. This immunosensor was specific for

E.coli

O157:H7 and showed significantly higher signal strength than for nonpathogenic

E.coli

or other bacteria, including

Listeria monocytogenes

and

Vibrio s.p.

, in pure or in mixed-culture setup. The results could be obtained within about 15 min of sampling.

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Metadaten
Titel
A Fiber Optic Immunosensor for Rapid Bacteria Determination
verfasst von
M. Taniguchi
E. Akai
T. Koshida
K. Hibi
H. Kudo
K. Otsuka
H. Saito
K. Yano
H. Endo
Kohji Mitsubayashi
Copyright-Jahr
2007
Verlag
Springer Berlin Heidelberg
DOI
https://doi.org/10.1007/978-3-540-68017-8_79