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Biomedical subjects

P J Keay

Publications and source records attributed to P J Keay.

3 recordsLinked to original sources

Plasma preparation from whole blood using ultrasound.

A technique to efficiently separate plasma from human whole blood is described. Essentially, 3-mL samples are held on the axis of a tubular transducer and exposed for 5.7 min to an ultrasonic standing wave. The cells concentrate into clumps at radial separations of half wavelength. The clumps grow in size and sediment under gravity. A distinct plasma/cell interface forms as the cells sediment. The volume of clarified plasma increases with time. The separation efficiencies of transducers of 29-mm and 23-mm internal diameters driven, by test equipment, at radial resonances of 3.4 and 1.5 MHz, respectively, were compared. The average efficiency of separation was 99.6% at 1.5 MHz and 99.4% with the 3.4-MHz system. The cleared plasma constituted 30% of the sample volume at 1.5 MHz and 25% at 3. 4 MHz. There was no measurable release of haemoglobin or potassium into the suspending phase, indicating that there was no mechanical damage to cells at either frequency. A total of 114 samples from volunteers and patients were subsequently clarified in a 1.5-MHz system driven by an integrated generator. The average efficiency of clarification of blood was 99.76% for the latter samples. The clarification achieved is a significant improvement on that previously reported (98.5%) for whole blood exposed to a planar ultrasonic standing wave field (Peterson et al. 1986). We have, therefore, now achieved a six-fold reduction of cells in plasma compared to previous results.

Blood↗

A visual programming environment for bioprocess control.

The paper introduces the use of a visual programming environment (LabVIEW) to program custom control functions for bioprocess research. The time taken for a bioprocess scientist to program new functions compared well with typical times expected for experienced programmers using conventional languages. Experienced LabVIEW programmers will develop applications significantly faster. The package described was flexible, easy to use and was ideally suited to developing new applications for control of bioprocesses. It was demonstrated with the development of a system to control specific growth rate in a fed-batch culture.

Recombinant Proteins↗

Development of a charged-coupled device-based light-scattering instrument for the detection of C-reactive protein using particle-enhanced immunoassay.

A novel light-scattering instrument has been developed for rapid detection of immunoreactions in test latex particle-enhanced immunoassays. The detector consists of a flat-field grating and a charge-coupled device mounted on a rotating platform, and the detector measures a continuous spectrum from 350 nm to 735 nm at 440 polar angles with a resolution of 0.5 degrees. Optimal detection for rates of immunoreaction were determined by intensity of scattered light at different angles. Instrumental precisions were all shown to fall within 5% of the target relative standard deviation limits. The accuracy of the instrument was confirmed using monodispersed latex particles of known size and shape. The initial results showed the possibility of a sensitive and accurate detection of C-reactive protein throughout the range of clinical interest, thus demonstrating a significant potential for biomedical applications.

C-Reactive Protein↗