Dynamic fluoroimmunoassay with a flow-through system using optical fiber probes consisting of polystyrene was developed and applied to a quantitative detection of E. coli O157:H7. The system measures E. coli as fluorescence of sandwich-type immune complexes formed by capture antibodies immobilized on the surface of the probe, E. coli cells, and fluorescently labeled detection antibodies. Excitation was carried out using an evanescent wave from the probe. Resulting fluorescence recoupled into the probe was detected by a photodiode. The assay system was constructed with a flow cell which was available for sequential injection of experimental reagents. In vitro characterization was performed using the flow cell, and the calibration range of E...
The speed and specificity characteristic of immunochemical complex formation has encouraged the deve...
There is a need to develop an online bacterial detection system which enables sample preparation, co...
There is a need to develop an online bacterial detection system which enables sample preparation, co...
A rapid and reproducible fiber-optic immunosensor for Escherichia coli O157:H7 (E. coli O157:H7) was...
Nature of bacterial infections and the influence of pathogenic bacteria on cells are of critical int...
[[abstract]]Our group has previously reported a sandwich-based strip immunoassay for rapid detection...
[[abstract]]Our group has previously reported a sandwich-based strip immunoassay for rapid detection...
[[abstract]]Our group has previously reported a sandwich-based strip immunoassay for rapid detection...
[[abstract]]Our group has previously reported a sandwich-based strip immunoassay for rapid detection...
In this report, a passive microfluidic chip design was developed for fast and sensitive fluorometric...
[[abstract]]Our group has previously reported a sandwich-based strip immunoassay for rapid detection...
[[abstract]]Our group has previously reported a sandwich-based strip immunoassay for rapid detection...
Cylindrical or taper-and-cylinder combination optical fiber probe based on evanescent wave has been ...
The speed and specificity characteristic of immunochemical complex formation has encouraged the deve...
In this work we present a highly sensitive LFIA combined with a silver enhancement strategy that all...
The speed and specificity characteristic of immunochemical complex formation has encouraged the deve...
There is a need to develop an online bacterial detection system which enables sample preparation, co...
There is a need to develop an online bacterial detection system which enables sample preparation, co...
A rapid and reproducible fiber-optic immunosensor for Escherichia coli O157:H7 (E. coli O157:H7) was...
Nature of bacterial infections and the influence of pathogenic bacteria on cells are of critical int...
[[abstract]]Our group has previously reported a sandwich-based strip immunoassay for rapid detection...
[[abstract]]Our group has previously reported a sandwich-based strip immunoassay for rapid detection...
[[abstract]]Our group has previously reported a sandwich-based strip immunoassay for rapid detection...
[[abstract]]Our group has previously reported a sandwich-based strip immunoassay for rapid detection...
In this report, a passive microfluidic chip design was developed for fast and sensitive fluorometric...
[[abstract]]Our group has previously reported a sandwich-based strip immunoassay for rapid detection...
[[abstract]]Our group has previously reported a sandwich-based strip immunoassay for rapid detection...
Cylindrical or taper-and-cylinder combination optical fiber probe based on evanescent wave has been ...
The speed and specificity characteristic of immunochemical complex formation has encouraged the deve...
In this work we present a highly sensitive LFIA combined with a silver enhancement strategy that all...
The speed and specificity characteristic of immunochemical complex formation has encouraged the deve...
There is a need to develop an online bacterial detection system which enables sample preparation, co...
There is a need to develop an online bacterial detection system which enables sample preparation, co...