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Biomedical subjects

Tony Byrne

Publications and source records attributed to Tony Byrne.

2 recordsLinked to original sources

Non-mediated glucose biosensing using nanostructured TiO2.

Insufficient insulin production in diabetics can be controlled by discontinuous measurement and insulin therapy. Ideally, an artificial pancreas system would be a closed loop system measuring glucose levels, and administering insulin as required, to minimise patient contribution. This paper presents an investigation into the use of titanium dioxide as an electrochemical transducer for the detection of hydrogen peroxide. Hydrogen peroxide is the product of glucose oxidation by the enzyme glucose oxidase in the presence of oxygen. The results show that peroxide can be quantitatively detected by electrochemical reduction on titanium dioxide electrodes without interference due to dissolved oxygen. When tested for the indirect amperometric measurement of glucose (with free glucose oxidase) it was found that the electrodes responded linearly over the range of glucose concentration found in human blood. With further development, these electrodes may be suitable for implantable glucose sensors.

Biosensing Techniques↗

Detection and removal of pathogenic biofilms on medical implant surfaces.

Advances in sensor technology have had a significant impact in medical research and practice in the last decade. However, within the hospital environment problems still exist where the application of sensing technology could provide the solution. The presence of antibiotic resistant bacteria within hospitals and the risk of serious infection that they pose is a cause for concern. This paper describes a research project that has recently started at the University of Ulster investigating the potential of "Sense and Destroy" tactics to reduce the spread of medical device related infections. It is proposed that Electrical Impedance Spectroscopy (EIS) probes implanted within a catheter may be used to detect subclinical biofilm formation. Furthermore, if the presence of a biofilm is detected, activation of a photocatalytic coating on the catheter wall may be used to inactivate the responsible microorganisms.

Biofilms↗