PubMed HealthSearch

Biomedical subjects

D C Cullen

Publications and source records attributed to D C Cullen.

4 recordsLinked to original sources

Physical adsorption of immunoglobulin G on gold studied by scanning tunnelling microscopy.

This paper describes a preliminary scanning tunnelling microscope (STM) study of the physical adsorption of a mouse monoclonal anti-hCG (human chorionic gonadotrophin) immunoglobulin G (IgG) on vacuum-evaporated gold surfaces in air. Ellipsoid-like protrusions of various geometric sizes assembled in different surface patterns were observed on scanning adsorbed IgG molecules. It is believed that both the adsorption process per se and the tip-molecule interactions are key factors which determine the topographical features of adsorbed IgG molecules.

Adsorption

Biosensors.

This review introduces biosensors as analytical devices that respond selectively to analytes in appropriate samples and convert their concentrations into electrical signals via a combination of a biological recognition system and a suitable transducer. The last decade has seen dramatic advances in the design of sensor configurations, the marriage of biological systems with modern monolithic silicon and optical technologies, the development of effective electron-exchange systems and the introduction of direct immunosensors.

Animals

Detection of immuno-complex formation via surface plasmon resonance on gold-coated diffraction gratings.

The sensitivity of surface plasmon resonance techniques to changes in local interfacial refractive index has been exploited to detect immuno-complex formation in two model biochemical systems. A gold-coated diffraction grating has been used to excite surface plasmons at the gold/solution interface to which either human immunoglobulin G or the immunoglobulin fraction of sheep antiserum to human serum albumin was physically adsorbed. The complementary proteins, either affinity purified goat anti-human-IgG IgG or human serum albumin was subsequently specifically bound by immuno-complex formation. The binding reactions could be followed with respect to time.

Animals

A microelectronic conductimetric biosensor.

The fabrication and operation of a microelectronic conductimetric biosensor is described. The device monitors the change in solution conductance occasioned by the catalytic action of enzymes immobilised over a planar conductance cell comprising serpentined and interdigitated metal conductor tracks. The output of the instrument was linear over a 3 min period on addition of urea to a sample cell overlaid with immobilised urease. The responses to any given urea concentration were reproducible to within approximately +/- 1%. The device responds to urea present in serum samples.

Electrochemistry