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Glucose clamping and cardiovascular function in endotoxic dogs.
The American Journal of Physiology
|November 11, 1985
Summary
Altered blood glucose levels significantly impact survival during endotoxin shock. Hyperglycemia prolonged survival, while hypoglycemia shortened it, indicating glucose dyshomeostasis is critical in shock.
Area of Science:
- Cardiovascular Physiology
- Endocrinology
- Shock Pathophysiology
Background:
- Endotoxin administration triggers a complex systemic inflammatory response, often leading to shock and cardiovascular dysfunction.
- The role of glucose metabolism and its regulation (glucose homeostasis) in the context of endotoxic shock remains incompletely understood.
Purpose of the Study:
- To investigate the impact of controlled blood glucose levels (glucose clamping) on survival and cardiovascular function during experimental endotoxemia.
- To determine whether pre-existing glucose dyshomeostasis influences the outcome of endotoxin-induced shock.
Main Methods:
- Mongrel dogs were anesthetized and instrumented for continuous monitoring of blood glucose, electrocardiogram, and cardiovascular pressures.
- Cardiac output, left ventricular stroke work, and pulmonary and systemic resistances were calculated.
- Dogs underwent glucose clamping to achieve hypoglycemic, normoglycemic, or hyperglycemic states before endotoxin or saline administration.
Main Results:
- Hypoglycemic clamping significantly reduced survival time in endotoxic dogs compared to normoglycemic or hyperglycemic groups.
- Hyperglycemic clamping markedly prolonged survival in endotoxic dogs.
- Cardiovascular function was depressed in hypoglycemic-clamped dogs, even in the absence of endotoxin, and mirrored survival outcomes in endotoxic shock.
Conclusions:
- Glucose dyshomeostasis plays a critical role in the development of fatal cardiovascular dysfunction and shock following endotoxin administration.
- Maintaining normoglycemia or hyperglycemia may be protective in endotoxin shock, while hypoglycemia is detrimental.
- These findings highlight the importance of glucose management in critically ill patients experiencing sepsis or shock.