Interstitial fluid glucose dynamics during insulin-induced hypoglycaemia
- 7 July 2005
- journal article
- research article
- Published by Springer Nature in Diabetologia
- Vol. 48 (9) , 1833-1840
- https://doi.org/10.1007/s00125-005-1852-x
Abstract
Aims/hypothesis Glucose sensors often measure s.c. interstitial fluid (ISF) glucose rather than blood or plasma glucose. Putative differences between plasma and ISF glucose include a protracted delay during the recovery from hypoglycaemia and an increased gradient during hyperinsulinaemia. These have often been investigated using sensor systems that have delays due to signal smoothing, or require long equilibration times. The aim of the present study was to define these relationships during hypoglycaemia in a well-equilibrated system with no smoothing. Methods Hypoglycaemia was induced by i.v. insulin infusion (360 pmol·m−2·min−1) in ten non-diabetic subjects. Glucose was sequentially clamped at ∼5, 4.2 and 3.1 mmol/l and allowed to return to normoglycaemia. Subjects wore two s.c. glucose sensors (Medtronic MiniMed, Northridge, CA, USA) that had been inserted for more than 12 h. A two-compartment model was used to quantify the delay and gradient. Results The delay during the fall in plasma glucose was not different from the delay during recovery (8.3±0.67 vs 6.3±1.1 min; p=0.27) and no differences were observed in the ratio of sensor current to plasma glucose at basal insulin (2.7±0.25 nA·mmol−1·l) compared with any of the hyperinsulinaemic clamp phases (2.8±0.18, 2.7±0.021, 2.9±0.21; p=NS). The ratio was significantly elevated following recovery to normoglycaemia (3.1±0.2 nA·mmol−1·l; p<0.001). Conclusions/interpretation The elevated ratio suggests that the plasma to ISF glucose gradient was decreased following hypoglycaemia, possibly due to increased skin blood flow. Recovery from hypoglycaemia is not accompanied by a protracted delay and insulin does not increase the plasma to s.c. ISF glucose gradient.Keywords
This publication has 27 references indexed in Scilit:
- Determination of Plasma Glucose During Rapid Glucose Excursions with a Subcutaneous Glucose SensorDiabetes Technology & Therapeutics, 2003
- Do Sensor Glucose Levels Accurately Predict Plasma Glucose Concentrations During Hypoglycemia and Hyperinsulinemia?Diabetes Care, 2002
- Can Interstitial Glucose Assessment Replace Blood Glucose Measurements?Diabetes Technology & Therapeutics, 2000
- Performance Evaluation of the MiniMed® Continuous Glucose Monitoring System During Patient Home UseDiabetes Technology & Therapeutics, 2000
- Detection of Hypoglycaemia by Microdialysis - Measurements of Glucose in Subcutaneous Adipose TissueHormone and Metabolic Research, 1997
- Use of a Subcutaneous Glucose Sensor To Detect Decreases in Glucose Concentration Prior to Observation in BloodAnalytical Chemistry, 1996
- Does fall in tissue glucose precede fall in blood glucose?Diabetologia, 1996
- The Effect of Intensive Treatment of Diabetes on the Development and Progression of Long-Term Complications in Insulin-Dependent Diabetes MellitusNew England Journal of Medicine, 1993
- Lack of Cutaneous Hyperemia in Response to Insulin-Induced Hypoglycemiain IDDMDiabetes Care, 1990
- Evaluating Clinical Accuracy of Systems for Self-Monitoring of Blood GlucoseDiabetes Care, 1987