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Published on: June 11, 2012
Glucose counterregulation, hypoglycemia, and intensive insulin therapy in diabetes mellitus
Abstract:
The prevention or correction of hypoglycemia is the result of both dissipation of insulin and activation of counterregulatory systems. In the models studied to date, glucagon and epinephrine have been shown to be the key counterregulatory factors; the potential roles of other hormones, neural factors, or substrate mechanisms in other models and during more gradual recovery from hypoglycemia remain to be defined. Deficient glucagon responses to decrements in plasma glucose, which are common in patients with IDDM and occur in some patients with NIDDM, result in altered counterregulation. But counterregulation is generally adequate, because epinephrine compensates for it. Defective glucose counterregulation due to combined deficiencies of glucagon and epinephrine secretory responses occurs in many patients, typically those with longstanding diabetes, and must be added to the list of factors known to increase the risk of hypoglycemia, at least during intensive therapy. From the material reviewed, it should be apparent that much has been learned about glucose counterregulation. It should be equally clear that much remains to be learned. Among the many possibilities, we consider four worthy of emphasis. First of all, we need to examine the physiology and pathophysiology of glucose counterregulation in additional models (e.g., during exercise) and over longer periods. Secondly, we need to determine whether central nervous system adaptation to antecedent glycemia occurs and, if so, identify its mechanisms. Thirdly, we need to develop better methods of insulin delivery or learn to correct or compensate for defective counterregulatory systems, if we are to achieve euglycemia safely in diabetic patients with defective glucose counterregulation. Finally, we need to know whether effective control of diabetes mellitus prevents development of defective glucose counterregulation.
Insights
Hypoglycemia counterregulation involves insulin and counterregulatory systems like glucagon and epinephrine. Deficiencies in these responses, especially in diabetes, increase hypoglycemia risk, highlighting areas for future research.
Area of Science:
- Endocrinology
- Metabolic Regulation
- Diabetes Pathophysiology
Background:
- Hypoglycemia counterregulation is crucial for maintaining glucose homeostasis.
- Glucagon and epinephrine are primary counterregulatory hormones, but other factors may be involved.
- Deficiencies in counterregulatory responses are common in diabetes mellitus.
Purpose of the Study:
- To review current understanding of glucose counterregulation.
- To identify gaps in knowledge and suggest future research directions.
- To explore mechanisms underlying defective counterregulation in diabetes.
Main Methods:
- Review of existing literature on glucose counterregulation.
- Analysis of the roles of glucagon, epinephrine, and other potential factors.
- Identification of patient populations with altered counterregulatory responses.
Main Results:
- Glucagon and epinephrine are key counterregulatory hormones.
- Deficient glucagon responses are common in insulin-dependent diabetes mellitus (IDDM) and some non-insulin-dependent diabetes mellitus (NIDDM) patients.
- Combined deficiencies of glucagon and epinephrine increase hypoglycemia risk, particularly in long-standing diabetes.
Conclusions:
- Significant progress has been made in understanding glucose counterregulation.
- Further research is needed on counterregulation during exercise, central nervous system adaptations, and the impact of diabetes control.
- Developing improved insulin delivery or compensatory strategies is essential for safe euglycemia in patients with defective counterregulation.
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