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PMID: 3899825 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Homeostasis model assessment: insulin resistance and beta-cell function from fasting plasma glucose and insulin concentrations in man.

Diabetologia ·Vol. 28 ·No. 7 ·1985-07-00 ·Pages 412-9

Matthews DR, Hosker JP, Rudenski AS, Naylor BA, Treacher DF, Turner RC

Abstract

The steady-state basal plasma glucose and insulin concentrations are determined by their interaction in a feedback loop. A computer-solved model has been used to predict the homeostatic concentrations which arise from varying degrees beta-cell deficiency and insulin resistance. Comparison of a patient's fasting values with the model's predictions allows a quantitative assessment of the contributions of insulin resistance and deficient beta-cell function to the fasting hyperglycaemia (homeostasis model assessment, HOMA). The accuracy and precision of the estimate have been determined by comparison with independent measures of insulin resistance and beta-cell function using hyperglycaemic and euglycaemic clamps and an intravenous glucose tolerance test. The estimate of insulin resistance obtained by homeostasis model assessment correlated with estimates obtained by use of the euglycaemic clamp (Rs = 0.88, p less than 0.0001), the fasting insulin concentration (Rs = 0.81, p less than 0.0001), and the hyperglycaemic clamp, (Rs = 0.69, p less than 0.01). There was no correlation with any aspect of insulin-receptor binding. The estimate of deficient beta-cell function obtained by homeostasis model assessment correlated with that derived using the hyperglycaemic clamp (Rs = 0.61, p less than 0.01) and with the estimate from the intravenous glucose tolerance test (Rs = 0.64, p less than 0.05). The low precision of the estimates from the model (coefficients of variation: 31% for insulin resistance and 32% for beta-cell deficit) limits its use, but the correlation of the model's estimates with patient data accords with the hypothesis that basal glucose and insulin interactions are largely determined by a simple feed back loop.

MeSH Terms
Adult Blood Glucose/metabolism Computers Diabetes Mellitus, Type 2/diagnosis,physiopathology Erythrocytes/metabolism Fasting Homeostasis Humans Insulin/blood Insulin Resistance Islets of Langerhans/physiopathology Middle Aged Monocytes/metabolism Receptor, Insulin/metabolism
Chemicals
Blood Glucose Insulin Receptor, Insulin
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Matthews D R
Hosker J P
Rudenski A S
Naylor B A
Treacher D F
Turner R C
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15 references, click to expand
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Article Info
Journal
Diabetologia
Abbr.
Diabetologia
ISSN
0012-186X
Published
1985-07-00
Pages
412-9
Language
English
Region
Germany
NLM ID
0006777
Subset
IM
Corrections
CommentIn
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