A new automatic apparatus based on the differential measurement of pH between two solutions has been developed. Two 25-microL (internal volume) glass capillary electrodes are used to measure the results of automated (under microcomputer control) chemical reactions that lead to the liberation or the uptake of hydrogen ions. The sensitivity of the differential pH measurements is better than +/- 0.0001 pH unit, and the change in H+ concentration that can be detected by such an apparatus is 1 mumol/L for plasma and 3 mumol/L for whole blood. The technique has been applied to the measurement of glucose in plasma, giving results in agreement with the specifications of the Food and Drug Administration reference method for quantitative determination of glucose (hexokinase/glucose-6-phosphate dehydrogenase method).

Measurement of glucose in plasma by a differential pH technique / M. Luzzana, G. Dossi, A. Mosca, A. Granelli, D. Berger, E. Rovida, M. Ripamonti, A. Musetti, L. Rossi-Bernardi. - In: CLINICAL CHEMISTRY. - ISSN 0009-9147. - 29:1(1983 Jan), pp. 80-5-85.

Measurement of glucose in plasma by a differential pH technique

A. Mosca;
1983

Abstract

A new automatic apparatus based on the differential measurement of pH between two solutions has been developed. Two 25-microL (internal volume) glass capillary electrodes are used to measure the results of automated (under microcomputer control) chemical reactions that lead to the liberation or the uptake of hydrogen ions. The sensitivity of the differential pH measurements is better than +/- 0.0001 pH unit, and the change in H+ concentration that can be detected by such an apparatus is 1 mumol/L for plasma and 3 mumol/L for whole blood. The technique has been applied to the measurement of glucose in plasma, giving results in agreement with the specifications of the Food and Drug Administration reference method for quantitative determination of glucose (hexokinase/glucose-6-phosphate dehydrogenase method).
Hexokinase; Methods; Hydrogen-Ion Concentration; Humans; Spectrophotometry; Electrochemistry; Blood Glucose
Settore BIO/12 - Biochimica Clinica e Biologia Molecolare Clinica
gen-1983
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/191333
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