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Updated: Mar 1, 2026

Author Spotlight: Illuminating New Avenues for Adipose Tissue Metabolism and Disease Prevention
Published on: October 6, 2023
Continuous and simultaneous determination of venous blood metabolites
Anneli Andersson1, Qun Chen1, Leif Groop2
1Department of Pure and Applied Biochemistry, Lund University, P.O. Box 124, SE-22100 Lund, Sweden.
Abstract:
Metabolic syndrome is associated with cardiovascular disease, type 2 diabetes mellitus (T2DM) and prediabetes. Metabolic syndrome is a cluster of interrelated clinical disorders. Difficulties in regulating glucose levels in blood are implicated in many of these disorders. Lactate, another energy metabolite, is produced under anaerobic conditions and can be used to monitor the balance between aerobic and anaerobic metabolism. Tested together, these metabolite levels can provide pro-diagnostic information that improves patient outcomes. Glucose and lactate were determined continuously and simultaneously in whole blood using a dual-channel thermal biosensor device in which one channel employed glucose oxidase for glucose analysis in comparison with lactate oxidase for lactate analysis in the others. No detectable clogging or interference was observed using venous blood samples. The linear detection range for both the glucose and lactate assays was 0.5-45mM. The sampling rate of up to 24 samples per hour with assay cycle time of 2.5min was achieved. Comparative analysis between our device and the HemoCue method showed an excellent correlation. The device was stable for hundreds of injections over a period of 45 days. The broad linear range, fast response and detection sensitivity are satisfactory for the clinical requirements, e.g. for diabetic or cardiovascular patients in intensive care units or surgical operation, where the tight control of blood glucose can decrease morbidity or mortality.
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