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Query: UMLS:C0023241 (
Legionella
)
6,990
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Pathogen detection is important for health and safety reasons. Several outbreaks all over the world have shown the need for rapid, qualitative, quantitative, and, particularly, multianalyte detection systems. Hence, a multichannel flow-through chemiluminescence microarray chip for parallel detection of pathogenic bacteria was developed. The disposable chip made of acrylonitrile-butadiene-styrene (ABS) copolymer was devised as a support for a multiplexed sandwich immunoassay. Calibration and measurement was possible in one experiment, because the developed chip contains six parallel flow-through microchannels. Polyclonal antibodies against the pathogenic bacteria Escherichia coli O157:H7, Salmonella typhimurium, and
Legionella
pneumophila were immobilized on the chip by microcontact printing in order to use them as specific receptors. Detection of the captured bacteria was carried out by use of specific detection antibodies labelled with biotin and horseradish peroxidase (HRP)-streptavidine conjugates. The enzyme HRP generates chemiluminescence after adding luminol and hydrogen peroxide. This signal was observed by use of a sensitive
CCD
camera. The limits of detection are 1.8 x 10(4) cells mL(-1) for E. coli O157:H7, 7.9 x 10(4) cells mL(-1) for L. pneumophila, and 2.0 x 10(7) cells mL(-1) for S. typhimurium. The overall assay time for measurement and calibration is 18 min, enabling very fast analysis.
...
PMID:Development of a multichannel flow-through chemiluminescence microarray chip for parallel calibration and detection of pathogenic bacteria. 1957 90
The authors have previously proposed a novel refractive index two-dimensional sensing technique named "parallel scan spectral surface plasmon resonance imaging". In the technique, with a line-shaped light illumination, an image acquired with
CCD
detector could provide both SPR wavelength information and one-dimensional spatial distribution, and then provide one-dimensional distribution of refractive index with further calculation. Thus, two-dimensional distribution of refractive index of the entire sensing area can be obtained with one-dimensional optical line parallel scan. The technique offers advantages of both high sensitivity and high throughput, and could have potential applications in microarray analysis. In the present paper, the authors improve the data processing methods of the technique. The authors use the refractive index of air as a reference to get over the problem of precision of the incident angle. The authors also sense a manually dotted
Legionella
pneumophila mip DNA probe array with this technique and prove the feasibility of sensing microarrays by this highly sensitive and label-free technique. The relation between the equivalent refractive indices and the concentrations of the dotted
Legionella
pneumophila mip DNA probes is obtained, which has important reference value for further study.
...
PMID:[A novel spectral surface plasmon resonance 2-D sensing technique and its applications in DNA microarrays]. 2030 4