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The pathophysiological basis for intensive insulin replacement.

Abstract

Both type I and type II diabetes are characterised by a progressive decrease in beta-cell function and mass. In type I diabetes, autoimmune destruction results in rapid loss of beta-cell function, and insulin therapy is essential to maintain normoglycaemia. In type II diabetes, a diminished or absent first-phase insulin release is the earliest metabolic defect, which is accompanied by lack of prandial suppression of hepatic glucose production, increased postprandial glucose excursions and late insulin hypersecretion. Furthermore, chronic exposure to elevated glucose, even to intermittent postprandial spikes, results in further deterioration of the beta-cell function ('glucotoxicity'). By the time type II diabetes is diagnosed, beta-cell function and mass have declined by about 50%. With the progression of the disease and glucotoxicity there is continuous decrease in beta-cell mass due to increased apoptosis that results in absolute insulin deficiency. By then, patients require insulin administration to maintain glucose control. An increasing body of evidence demonstrates the importance of preserving endogenous beta-cell function both in type I and type II diabetes. Early and intensive glycaemic control, using regimens which re-create a physiological insulin profile, controlling postprandial as well as fasting glucose levels, offers the most promise for preserving beta-cell function, decreasing disease progression, and reducing the chronic complications of diabetes.

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BibTeXRIS

A Rolla. 2004. The pathophysiological basis for intensive insulin replacement.. https://doi.org/10.1038/sj.ijo.0802743

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Pancreatin therapy in patients with insulin-treated diabetes mellitus and exocrine pancreatic insufficiency according to low fecal elastase 1 concentrations. Results of a prospective multi-centre trial.

BACKGROUND: Recently, high prevalence of exocrine dysfunction in diabetic populations has been reported. Patients with fecal elastase 1 concentration (FEC) <100 microg/g have also been demonstrated to suffer from steatorrhea in about 60% of cases, indicating the need of pancreatic enzyme replacement therapy. Until now, there have only been a few reports on the use of enzyme replacement therapy in diabetic patients with exocrine pancreatic insufficiency. This investigation was designed to evaluate the impact of enzyme-replacement therapy on glucose metabolism and diabetes treatment in a prospective study of insulin-treated patients with diabetes mellitus. METHODS: A total of 546 patients with diabetes mellitus requiring insulin treatment were screened for exocrine dysfunction by FEC measurements. One hundred and fifteen patients (21.1%) had FEC <100 microg/g (normal >200 microg/g). Of these, 95 patients entered the study and 80 patients were randomized to receive either pancreatin (Creon) (39 patients) or placebo (41 patients) in a double-blind manner. Parameters of glucose metabolism, diabetes therapy and clinical symptoms were recorded in standardized protocols for 16 weeks. RESULTS: During the observation phase of 16 weeks, there were no significant differences between both groups concerning HbA(1c), fasting glucose levels, 2-h pp glucose levels, clinical parameters and safety parameters. A reduction in mild and moderate hypoglycemia was observed in the pancreatin group at the end of the study. CONCLUSIONS: Pancreatin therapy can be used safely in patients with diabetes mellitus and exocrine dysfunction. Parameters of glucose metabolism were not improved by enzyme replacement therapy.

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