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PMID: 14575972 Published · ppublish English Clinical Trial Comparative Study Journal Article Randomized Controlled Trial Research Support, Non-U.S. Gov't

Genetic cause of hyperglycaemia and response to treatment in diabetes.

Lancet (London, England) ·Vol. 362 ·No. 9392 ·2003-10-18 ·Pages 1275-81

Pearson ER, Starkey BJ, Powell RJ, Gribble FM, Clark PM, Hattersley AT

Abstract

Type 2 diabetes shows evidence of underlying heterogeneity. No studies have assessed whether different causes for diabetes change the response to oral hypoglycaemic therapy. In a few cases, patients with diabetes caused by mutations in the hepatocyte nuclear factor 1alpha (HNF-1alpha) gene have been described as sensitive to the hypoglycaemic effects of sulphonylureas. We aimed to see whether the glycaemic response to the sulphonylurea gliclazide and the biguanide metformin differed in HNF-1alpha diabetes and type 2 diabetes, and to investigate the mechanism for differences in sulphonylurea sensitivity. We did a randomised crossover trial of glicazide and metformin in 36 patients, either with diabetes caused by HNF-1alpha mutations or type 2 diabetes, who were matched for body-mass index and fasting plasma glucose. The primary outcome was reduction in fasting plasma glucose. Analysis was by intention to treat. We assessed possible mechanisms for sulphonylurea sensitivity through insulin sensitivity, insulin secretory response to glucose and tolbutamide, and tolbutamide clearance. Patients with HNF-1alpha diabetes had a 5.2-fold greater response to gliclazide than to metformin (fasting plasma glucose reduction 4.7 vs 0.9 mmol/L, p=0.0007) and 3.9-fold greater response to gliclazide than those with type 2 diabetes (p=0.002). Patients with HNF-1alpha diabetes had a strong insulin secretory response to intravenous tolbutamide despite a small response to intravenous glucose, and were more insulin sensitive than those with type 2 diabetes. Sulphonylurea metabolism was similar in both patient groups. The cause of hyperglycaemia changes the response to hypoglycaemic drugs; HNF-1alpha diabetes has marked sulphonylurea sensitivity. This pharmacogenetic effect is consistent with models of HNF-1alpha deficiency, which show that the beta-cell defect is upstream of the sulphonylurea receptor. Definition of the genetic basis of hyperglycaemia has implications for patient management.

MeSH Terms
ATP-Binding Cassette Transporters/drug effects,physiology Adult Aged Blood Glucose/analysis DNA-Binding Proteins Diabetes Mellitus/blood,drug therapy,genetics Diabetes Mellitus, Type 2/blood,drug therapy,genetics Fasting/blood Female Gliclazide/pharmacology,therapeutic use Hepatocyte Nuclear Factor 1 Hepatocyte Nuclear Factor 1-alpha Hepatocyte Nuclear Factor 1-beta Humans Hyperglycemia/blood,genetics Hypoglycemic Agents/pharmacology,therapeutic use Male Metformin/pharmacology,therapeutic use Middle Aged Nuclear Proteins Potassium Channels/drug effects,physiology Potassium Channels, Inwardly Rectifying Receptors, Drug/drug effects,physiology Sulfonylurea Receptors Transcription Factors/genetics
Chemicals
ATP-Binding Cassette Transporters Blood Glucose DNA-Binding Proteins HNF1A protein, human HNF1B protein, human Hepatocyte Nuclear Factor 1-alpha Hypoglycemic Agents Nuclear Proteins Potassium Channels Potassium Channels, Inwardly Rectifying Receptors, Drug Sulfonylurea Receptors Transcription Factors Hepatocyte Nuclear Factor 1 Hepatocyte Nuclear Factor 1-beta Metformin Gliclazide
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Pearson Ewan R
Diabetes and Vascular Medicine, Peninsula Medical School, Exeter, UK.
Starkey Bryan J
Powell Roy J
Gribble Fiona M
Clark Penny M
Hattersley Andrew T
Article Info
Journal
Lancet (London, England)
Abbr.
Lancet
ISSN
1474-547X
Published
2003-10-18
Pages
1275-81
Language
English
Region
England
NLM ID
2985213R
Subset
IM
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