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R Hintsche

Publications and source records attributed to R Hintsche.

8 recordsLinked to original sources

Second generation biosensors.

Enzyme-membrane electrodes using glucose oxidase in combination with peroxide detection dominate in the field of laboratory analyzers for diluted samples. Using the same indication principle, extremely fast responding glucose sensors have been fabricated by covering thin metal electrodes with a porous enzyme layer. In the second generation auxiliary enzymes and/or co-reactants are coimmobilized with the analyte converting enzyme in order to improve the analytical quality and to simplify the performance. Following this line oxidizable interferences are suppressed by using a glucose oxidase/peroxidase complex which communicates with the electrode at a low working potential. Furthermore, fluctuations of pH or buffer capacity are ineffective when using a glucose oxidase/peroxidase layer covered fluoride FET in the potentiometric glucose determination. Enzymatic recycling of the analyte and/or accumulation of intermediates increase the sensitivity by several orders of magnitude. Inclusion of NAD bound to PEG in the glucose dehydrogenase layer allows a reagentless glucose measurement.

Biosensing Techniques

Glucose measurement in diluted blood.

The sensitivity, measuring range and lifetime of enzyme electrodes using glucose oxidase sandwiched between dialysis membranes or alternatively in a polyurethane layer directly on the surface of a platinum electrode are compared. The GOD modified electrode exhibits the highest sensitivity. However, the signal depends strongly on the stirring rate. Using the sandwich membranes up to 120 diluted blood samples per hour with a serial coefficient of variation below 1% can be analyzed.

Biosensing Techniques

[NMR spectroscopic characterization of deuterohemin complexes in aqueous media].

1H-NMR measurement and NMR susceptibility measurements were carried out with deuterohemin complexes in aqueous solution. The hydroxyaquo complex of deuterohemin, which is dimeric in weakly alkaline medium, turns into a low-spin dicyano complex on addition of cyanide. This reaction proceeds in two steps: whereas in the first, slow step a dimeric low-spin hydroxycyano complex is formed, in the second step the latter is converted quickly into the dimeric dicyano complex. The pK values for the overall reaction, the first and the second step were measured to be 23.25; 0.39 and 22.86, respectively. The values of free energy variation obtained therefrom suggest that conformational changes are decisive in the liganding of methemoglobin.

Cyanides