scholarly journals Acute Alcohol Consumption Improves Insulin Action Without Affecting Insulin Secretion in Type 2 Diabetic Subjects

Diabetes Care ◽  
2004 ◽  
Vol 27 (6) ◽  
pp. 1369-1374 ◽  
Author(s):  
A. Avogaro ◽  
R. M. Watanabe ◽  
A. Dall'Arche ◽  
S. Vigili De Kreutzenberg ◽  
A. Tiengo ◽  
...  
1999 ◽  
Vol 58 (3) ◽  
pp. 647-653 ◽  
Author(s):  
Mark J. Holness

The goal of this review is to develop the hypothesis, and review the evidence, that protein restriction, through synergistic effects on multiple organ systems predisposes to loss of normal regulation of fuel homeostasis that plays the central role in the development of type 2 (non-insulin-dependent) diabetes mellitus. The ability of insulin to regulate glucose production and disposal varies between individuals. These differences, together with the various compensatory mechanisms that are invoked to attempt to normalize fuel homeostasis, are of fundamental importance in the development and clinical course of type 2 diabetes mellitus. Protein deprivation impacts on both insulin secretion and insulin action. These effects may persist even when a diet containing adequate protein is presented subsequently. Data are presented that suggest that protein restriction results in an impaired ability of pancreatic β-cells to compensate adequately for the defect in insulin action in insulin-resistant individuals. This persistent impairment of insulin secretion resulting from protein restriction predisposes to loss of glucoregulatory control and impaired insulin action after the subsequent imposition of a diabetogenic challenge. This inability to maintain the degree of compensatory hyperinsulinaemia necessary to prevent loss of glucose tolerance may have relevance to the increased incidence of diabetes on changing from a nutritionally-poor diet to a Western diet, and to the hypothesis that some cases of type 2 diabetes in adulthood may be related to poor early nutrition.


2006 ◽  
Vol 291 (5) ◽  
pp. E1051-E1058 ◽  
Author(s):  
Serenella Salinari ◽  
Alessandro Bertuzzi ◽  
Alberto Gandolfi ◽  
Aldo V. Greco ◽  
Antonino Scarfone ◽  
...  

Metabolically healthy skeletal muscle possesses the ability to switch easily between glucose and fat oxidation in response to homeostatic signals. In type 2 diabetes mellitus and obesity, the skeletal muscle shows a great reduction in this metabolic flexibility. A substrate like dodecanedioic acid (C-12), able to increase skeletal muscle glycogen stores via succinyl-CoA formation, might both postpone the fatigue and increase fatty acid utilization, since it does not affect insulin secretion. In healthy volunteers and in type 2 diabetic subjects, the effect of an oral C-12 load was compared with a glucose or water load during prolonged, moderate-intensity, physical exercise. C-12 metabolism was analyzed by a mathematical model. After C-12, diabetics were able to complete the 2 h of exercise. Nonesterified fatty acids increased both during and after the exercise in the C-12 session. C-12 oxidation provided 14% of total energy expenditure, and the sum of C-12 plus lipids oxidized after the C-12 meal was significantly greater than lipids oxidized after the glucose meal ( P < 0.025). The fraction of C-12 that entered the central compartment was 47% of that ingested. During the first phase of the exercise (∼60 min), the mean C-12 clearance from the central compartment toward tissues was 2.57 and 1.30 l/min during the second phase of the exercise. In conclusion, C-12 seems to be a suitable energy substrate during exercise, since it reduces muscle fatigue, is rapidly oxidized, and does not stimulate insulin secretion, which implies that lipolysis is not inhibited as reported after glucose ingestion.


Nitric Oxide ◽  
2017 ◽  
Vol 64 ◽  
pp. 39-51 ◽  
Author(s):  
Sevda Gheibi ◽  
Fatemeh Bakhtiarzadeh ◽  
Sajad Jeddi ◽  
Khadijeh Farrokhfall ◽  
Homeira Zardooz ◽  
...  

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