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Biomedical subjects

T L Day

Publications and source records attributed to T L Day.

4 recordsLinked to original sources

A comparison of ELISA and RPLA for detection of Bacillus cereus diarrhoeal enterotoxin.

Fourteen strains of Bacillus cereus isolated from different sources were examined for their ability to produce diarrhoeal enterotoxin by two commercial immunoassay kits (Oxoid BCET-RPLA and Tecra ELISA) and the microslide immunodiffusion assay. One strain that was positive in monkey feedings, as well as a number of other strains isolated from diarrhoeal outbreaks, gave positive results in the ELISA and negative results in the RPLA test systems. When tested in the microslide assay, these strains produced only one antigen which formed a line of identity with the reference toxin. The results of the control toxins provided with the kits substantiated that the two commercial assays did not detect the same antigen. Cultures positive with both assay kits were shown to produce diarrhoeal enterotoxin (by a line of identity) and other antigens in the microslide immunodiffusion assay.

Antigens, Bacterial

A microchip glucose sensor.

A major problem in development of a glucose sensor for use in an implantable artificial pancreas is the lack of reproducibility in signals from sensor to sensor. Each glucose sensor fabricated with currently used methods has a unique response to varying levels of glucose concentration and thus needs to be individually calibrated before use. We have adapted microchip manufacturing techniques for the fabrication of electrochemically based glucose sensors with standardized and reproducible function. Scanning electron microscopic study of the resulting electrode surfaces shows them to be smooth and featureless at all levels of magnification. X-ray diffraction analysis of the electrodes indicates preferential exposure of the [1,1,1] crystal interface. Cyclic voltammetry evaluation of initial sensor response to varying glucose concentrations shows excellent sensor to sensor reproducibility for all sensors made with the same underlayment. Sensors made with titanium underlayment appear to be more differentiated and thus more sensitive to variations in glucose concentration than are sensors with chromium underlayment. Although the initial response of microchip glucose sensors appears to be standardized and reproducible, additional development of an appropriate electrical insulation material is required before long-term study of signal stability is feasible.

Biomedical Engineering

Interference of glucose sensing by amino acids.

Interference by membrane permeable substances on nonspecific electrodes is a major problem in glucose sensing. Alanine, lysine, phenylalanine, and cystine were chosen for study to gain insight into this problem. These compounds represent the classes of mono-amino aliphatic, di-amino aliphatic, aromatic, and sulfur containing amino acids, respectively. Cyclic voltammetry experiments were performed using a Pt electrode (1.77 mm2). The reductive current of glucose at -0.750 V versus Ag/AgCl was measured with increasing concentrations of interfering substances in Krebs-Ringer phosphate buffer (pH 7.4) at 37 degrees C. Experimental results have shown that these amino acids have an inhibitory effect on the glucose signal. An important finding was that the interferences from phenylalanine and cystine were more pronounced than those of lysine and alanine. An initial drop in the glucose signal was seen at less than 2.0 mg/dl of alanine or lysine and at less than 0.5 mg/dl of phenylalanine or cystine. Additional increase in the concentrations of interfering substance did not cause further appreciable signal reduction. The results confirm that glucose sensing using a non-specific electrode is possible in fluids containing interfering substances such as amino acids.

Alanine