Hypoglycemia Associated Autonomic Failure in Type 1 DM, Question 5
试验速览
- 阶段
- 不适用
- 状态
- 撤回
- 主要终点
- catecholamine levels
研究概览
简要总结
When a patient with Type 1 diabetes exercises, he or she is more prone to low blood sugar, or hypoglycemia. It is known that antecedent exercise can blunt defense responses, called counterregulatory responses to subsequent hypoglycemia in Type 1 DM, causing him or her to be vulnerable to another bout of hypoglycemia. Epinephrine is one of the important hormones in the defense of blood glucose during both exercise and hypoglycemia. We will test the hypothesis that antecedent exercise will blunt the metabolic, neuroendocrine and cardiovascular effects of subsequent epinephrine infusion in Type 1 DM.
详细描述
We have recently performed studies to determine whether the critical metabolic actions of epinephrine are blunted in Type 1 DM. These studies have obvious clinical relevance because strategies aimed at increasing circulating levels of epinephrine will not be effective if the metabolic counterregulatory mechanisms (increased endogenous glucose production (EGP), increased lipolysis and reduced glucose uptake) of the hormone are also blunted. Epinephrine was infused to reach circulating levels of ~ 1000 pg/ml (This level of epinephrine is equivalent to values of the hormone observed during hypoglycemia of 50 mg/dl in healthy males and T1DM men with average glucose control) in groups of either intensively treated (HBA1C < 7.0%), conventionally treated (HBA1C > 9.0%) type 1 DM and age, weight matched healthy controls. In the intensively treated DM group, epinephrine's actions to increase EGP, lipolysis and to restrain glucose uptake were significantly reduced (<60%). The mechanism for our finding needs to be determined. Our hypothesis is that antecedent exercise can cause repetitive activations of Autonomic-adrenomedullary responses that lead to downregulation of β-adrenoreceptor mechanisms. Therefore, the combination of blunted epinephrine effects, increased insulin action and reduced levels of the catecholamine might fully explain the vexing clinical question of post exercise hypoglycemia in Type 1 DM. In this application, we will test the hypothesis that antecedent exercise will blunt the metabolic, neuroendocrine and cardiovascular effects of subsequent epinephrine infusion in Type 1 DM.
研究设计
- 研究类型
- Interventional
- 分配方式
- Randomized
- 干预模型
- Crossover
- 盲法
- None
入排标准
- 年龄范围
- 18 Years 至 45 Years(Adult)
- 性别
- All
- 接受健康志愿者
- 是
入选标准
- •28 (14 males, 14 females) conventionally treated Type 1 diabetic patients with HA1C > 8.5%
- •28 (14 males, 14 females) intensively treated Type 1 diabetic patients with HA1C < 7%
- •28 (14 males, 14 females) non-diabetic controls
- •Age 18-45 yr.
- •Had diabetes for 2-15 years if diabetic subject
- •No clinical evidence of diabetic tissue complications, no cardiovascular disease
- •Body mass index 21-27kg · m-2
- •Normal bedside autonomic function
- •Normal results of routine blood test to screen for hepatic, renal, and hematological abnormalities
- •Female volunteers of childbearing potential: negative HCG pregnancy test
排除标准
- •Prior history of poor health: any current or prior disease condition that alters carbohydrate metabolism and prior cardiac events and/or evidence for cardiac disease
- •Hemoglobin of less than 12 g/dl
- •Abnormal results following screening tests
- •Pregnancy
- •Subjects unable to give voluntary informed consent
- •Subjects with a recent medical illness
- •Subjects with known liver or kidney disease
- •Subjects taking steroids
- •Subjects taking beta blockers
- •Subjects on anticoagulant drugs, anemic, or with known bleeding diseases
研究组 & 干预措施
2
Day 1 euglycemic exercise period x 2 Day 2 hyperinsulinemic euglycemic glucose clamp with epinephrine infusion
干预措施: epinephrine (Drug)
1
Hyperinsulinemic euglycemic glucose clamps x 2 on Day 1 Hyperinsulinemic euglycemic glucose clamp with epinephrine infusion on Day 2
干预措施: epinephrine (Drug)
结局指标
主要结局
catecholamine levels
时间窗: 2 days
次要结局
未报告次要终点
研究者
Steve Davis
Chairman of Medicine, University of Maryland, Baltimore
Vanderbilt University
