Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Adaptation to hyperglycemia enhances insulin secretion in glucokinase mutant mice.

View through CrossRef
The present study was undertaken to test the hypothesis that exposure to high glucose concentrations enhances insulin secretion in pancreatic islets from glucokinase-deficient mice. Insulin secretion and intracellular calcium ([Ca2+]i) were measured as the glucose concentration was increased from 2 to 26 mmol/l in islets from heterozygous glucokinase (GK)-deficient mice (GK+/-) and their wild-type littermates (GK+/+). Results obtained in islets incubated in 11.6 or 30 mmol/l glucose for 48-96 h were compared. GK+/- islets that had been incubated in 30 mmol/l glucose showed improved although not normal insulin secretory and [Ca2+]i responses to the standard glucose challenge as well as an enhanced ability to sense small amplitude glucose oscillations. These effects were associated with increased glucokinase activity and protein. In contrast, exposure of GK+/+ islets to 30 mmol/l glucose increased their basal insulin secretion but reduced their incremental secretory responses to glucose and their ability to detect small amplitude glucose oscillations. Thus exposure of GK+/- islets to 30 mmol/l glucose for 48-96 h enhanced their ability to sense and respond to a glucose stimulus, whereas similar exposure of GK+/+ islets induced evidence of beta-cell dysfunction. These findings provide a mechanistic framework for understanding why glucokinase diabetes results in mild hyperglycemia that tends not to increase over time. In addition, the absence of one allele of the glucokinase gene appears to protect against glucose-induced beta-cell dysfunction (glucose toxicity).
Title: Adaptation to hyperglycemia enhances insulin secretion in glucokinase mutant mice.
Description:
The present study was undertaken to test the hypothesis that exposure to high glucose concentrations enhances insulin secretion in pancreatic islets from glucokinase-deficient mice.
Insulin secretion and intracellular calcium ([Ca2+]i) were measured as the glucose concentration was increased from 2 to 26 mmol/l in islets from heterozygous glucokinase (GK)-deficient mice (GK+/-) and their wild-type littermates (GK+/+).
Results obtained in islets incubated in 11.
6 or 30 mmol/l glucose for 48-96 h were compared.
GK+/- islets that had been incubated in 30 mmol/l glucose showed improved although not normal insulin secretory and [Ca2+]i responses to the standard glucose challenge as well as an enhanced ability to sense small amplitude glucose oscillations.
These effects were associated with increased glucokinase activity and protein.
In contrast, exposure of GK+/+ islets to 30 mmol/l glucose increased their basal insulin secretion but reduced their incremental secretory responses to glucose and their ability to detect small amplitude glucose oscillations.
Thus exposure of GK+/- islets to 30 mmol/l glucose for 48-96 h enhanced their ability to sense and respond to a glucose stimulus, whereas similar exposure of GK+/+ islets induced evidence of beta-cell dysfunction.
These findings provide a mechanistic framework for understanding why glucokinase diabetes results in mild hyperglycemia that tends not to increase over time.
In addition, the absence of one allele of the glucokinase gene appears to protect against glucose-induced beta-cell dysfunction (glucose toxicity).

Related Results

(Invited) A Protein-Based Artificial Receptor for Insulin Sensing
(Invited) A Protein-Based Artificial Receptor for Insulin Sensing
Insulin is one of the most important hormones that controls the glucose level in blood. Therefore, the investigation of insulin is very important for the diabetic research. There h...
New and simple Ohmic definition of insulin resistance in lean and obese subjects
New and simple Ohmic definition of insulin resistance in lean and obese subjects
objective:: Insulin enhances the influx of glucose into cells. However, the relationship between glucose and insulin is complex and insulin sensitivity varies widely with age, ethn...
Insulin Secretion in Adult Rats After Intrauterine Exposure to Mild Hyperglycemia During Late Gestation
Insulin Secretion in Adult Rats After Intrauterine Exposure to Mild Hyperglycemia During Late Gestation
We investigated the effects of intrauterine mild hyperglycemia during late fetal life on glucose regulation and insulin secretion in adult rats. Unrestrained pregnant rats were con...
Pathogenesis of Type 2 Diabetes
Pathogenesis of Type 2 Diabetes
AbstractThe sections in this article are:Insulin Secretion in T2DMFasting Insulin ConcentrationGlucose‐Stimulated Insulin SecretionOther Abnormalities in Insulin Secretion in T2DMM...
Phosphoinositide 3-Kinase Inhibitor-Induced Hyperglycemia
Phosphoinositide 3-Kinase Inhibitor-Induced Hyperglycemia
Abstract Background: Phosphoinositide 3-kinase inhibitors (PI3Ki) are a new class of medications used to treat HR positive, HER2 negative, PIK3CA mutated advanced or...
Sequence Variations of the Glucokinase Gene in Japanese Subjects With NIDDM
Sequence Variations of the Glucokinase Gene in Japanese Subjects With NIDDM
Mutations in the glucokinase gene have been identified recently in patients with maturity-onset diabetes of the young, a subtype of NIDDM. The proposed role of glucokinase as a glu...
Diabetes Mellitus: Life Style, Obesity and Insulin Resistance
Diabetes Mellitus: Life Style, Obesity and Insulin Resistance
In millennia, 40 million people were died with non-communicable diseases and diabetes is one of them. In diabetes, insulin secretions are not produced properly or resist to body an...
Mutations in Insulin-Receptor Gene in Insulin-Resistant Patients
Mutations in Insulin-Receptor Gene in Insulin-Resistant Patients
Defects in insulin-receptor function have been associated with insulin-resistant states such as obesity and non-insulin-dependent diabetes mellitus (NIDDM). Several types of mutati...

Back to Top