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Updated: Jun 4, 2026

Hyperinsulinemic-euglycemic Clamps in Conscious, Unrestrained Mice
Published on: November 16, 2011
Adrenergic mediation of hypoglycemia-associated autonomic failure
Ranjani Ramanathan1, Philip E Cryer
1Division of Endocrinology, Metabolism and Lipid Research, Washington University School of Medicine, St. Louis, Missouri, USA.
Objective:
We tested the hypothesis that adrenergic activation, cholinergic activation, or both, mediate the effect of recent antecedent hypoglycemia to reduce the sympathoadrenal response to subsequent hypoglycemia, the key feature of hypoglycemia-associated autonomic failure in diabetes, in humans.
Research Design And Methods:
Seventeen healthy adults were studied on 2 consecutive days on three occasions. Day 1 involved hyperinsulinemic euglycemic (90 mg/dL × 1 h), then hypoglycemic (54 mg/dL × 2 h) clamps, in the morning and afternoon on all three occasions with 1) saline infusion, 2) adrenergic blockade with the nonselective α-adrenergic and β-adrenergic antagonists phentolamine and propranolol, or 3) adrenergic blockade plus cholinergic blockade with the muscarinic cholinergic antagonist atropine in random sequence. Day 2 involved similar morning euglycemic and hypoglycemic clamps, with saline infusion, on all three occasions.
Results:
Compared with the responses to hypoglycemia during saline infusion on day 1, the plasma epinephrine and norepinephrine responses to hypoglycemia were reduced on day 2 (351 ± 13 vs. 214 ± 22 pg/mL for epinephrine and 252 ± 4 vs. 226 ± 7 pg/mL for norepinephrine during the last hour; both P < 0.0001). However, the plasma epinephrine and norepinephrine responses to hypoglycemia were not reduced on day 2 when adrenergic or adrenergic plus cholinergic blockade was produced during hypoglycemia on day 1.
Conclusions:
Adrenergic blockade prevents the effect of hypoglycemia to reduce the plasma catecholamine responses to subsequent hypoglycemia. Thus, adrenergic activation mediates the effect of recent antecedent hypoglycemia to reduce the sympathoadrenal response to subsequent hypoglycemia, the key feature of hypoglycemia-associated autonomic failure in diabetes, in humans.
Insights
Recent hypoglycemia impairs the body's response to future low blood sugar by activating adrenergic pathways. Blocking these pathways prevents this impaired response, suggesting a key mechanism in diabetes-related autonomic failure.
Area of Science:
- Endocrinology
- Neuroscience
- Metabolic disorders
Background:
- Hypoglycemia-associated autonomic failure (HAAF) is a critical complication in diabetes management.
- Recent antecedent hypoglycemia impairs sympathoadrenal responses to subsequent hypoglycemia.
- The precise mechanisms mediating HAAF, particularly the role of adrenergic and cholinergic activation, require elucidation.
Purpose of the Study:
- To investigate whether adrenergic activation, cholinergic activation, or both, mediate the effect of recent antecedent hypoglycemia on sympathoadrenal responses to subsequent hypoglycemia in humans.
Main Methods:
- Seventeen healthy adults underwent hyperinsulinemic clamp studies with euglycemic and hypoglycemic phases.
- Adrenergic blockade (phentolamine and propranolol) and combined adrenergic-cholinergic blockade (atropine) were administered during antecedent hypoglycemia.
- Catecholamine responses to subsequent hypoglycemia were measured on consecutive days.
Main Results:
- Antecedent hypoglycemia significantly reduced plasma epinephrine and norepinephrine responses to subsequent hypoglycemia.
- Adrenergic blockade during antecedent hypoglycemia abolished this blunting effect on subsequent catecholamine responses.
- Combined adrenergic and cholinergic blockade also prevented the reduction in catecholamine responses.
Conclusions:
- Adrenergic activation is the primary mediator of recent antecedent hypoglycemia's effect in reducing sympathoadrenal responses to subsequent hypoglycemia.
- These findings highlight the critical role of adrenergic pathways in HAAF, a key feature of autonomic dysfunction in diabetes.
- Targeting adrenergic pathways may offer therapeutic strategies for managing HAAF in individuals with diabetes.
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