The Effect of Resistance Exercise on Postprandial Hyperglycemia in Patients With B-thalassemia Exhibiting Resistance to Insulin (Type II Diabetes and Prediabetes)
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 入组人数
- 6
- 试验地点
- 2
- 主要终点
- Changes in blood glucose
研究概览
简要总结
It is known that postprandial hyperglycemia increases the cardiometabolic risk in both diabetic and non-diabetic patients. Moreover, there is insufficient data on the effectiveness of exercise on preventing Type II diabetes mellitus in individuals with insulin resistance and prediabetes. This study aims to examine the effectiveness of resistance exercise in limiting postprandial hyperglycemia and the necessity of prescribing medication particularly in patients with beta-thalassemia and insulin resistance.
详细描述
Type II diabetes mellitus is a condition characterized by chronic hyperglycemia due to insufficient insulin production and action and tissue resistance to insulin. Pre-diabetes is also characterized by elevated levels of blood glucose, but not so high as those in diabetes.
Existing studies have shown that postprandial hyperglycemia is associated with an increased risk for complications of diabetes, both microvascular and macrovascular, as it contributes to the deficiency of β-pancreatic cells and endothelial dysfunction to a much greater extent than glycosylated hemoglobin (HbA1c) and fasting glucose.
The main problem in glycemic control is the glucose peak 1-2 hours after the meal. Therefore, there is a need to investigate whether postprandial exercise can help solve this problem.
Βeta-thalassemia is a group of heterogeneous hereditary anemias characterized by decreased or no production of beta-chain hemoglobin, resulting in inefficient erythropoiesis. The three main phenotypes are: a) major b) intermediate and c) heterozygous beta-thalassemia. Major thalassemia occurs in the first 2 years of life with severe anemia and requires systemic transfusions. The intermediate appears later and usually does not need transfusions. The heterozygote is asymptomatic, but some carriers may experience mild anemia. Beta-thalassemia is inherited in an autosomal recessive manner. Patient survival has increased significantly in recent years due to systemic transfusions and early treatment of disease complications. However, multiple transfusions result in the accumulation of large quantities of iron, which is toxic to pancreatic beta cells. Both decreased insulin production and decreased tissue sensitivity to insulin occur and result in pre-diabetes or Type II diabetes.
Regarding the effect of exercise on diabetic patients, it is confirmed that it reduces both the blood glucose concentration and hyperglycemia during the day. Resistance exercise increases heat production and oxygen consumption by the muscles, thus increasing metabolic activity and glucose uptake by these muscles. In addition, resistance exercise improves glycemic control without causing hypoglycemia and without affecting fasting glucose. Thus, the aim of this study is examine the effectiveness of resistance exercise in limiting postprandial hyperglycemia in patients with beta-thalassemia and insulin resistance.
研究设计
- 研究类型
- Interventional
- 分配方式
- Randomized
- 干预模型
- Crossover
- 主要目的
- Treatment
- 盲法
- None
入排标准
- 年龄范围
- 30 Years 至 55 Years(Adult)
- 性别
- All
- 接受健康志愿者
- 否
入选标准
- •Diagnosed with Beta-Thalassemia
- •Diagnosed with prediabetes or type II diabetes
排除标准
- •Heart failure
- •Hypertension
- •Muscular, neuromuscular, bone disorders
- •Muscular, bone or other injuries that do not allowed safe participation to exercise
结局指标
主要结局
Changes in blood glucose
时间窗: Pre-breakfast (fasting glucose), 45 min post-breakfast (before exercise), immediately post-exercise, 1 hour post-exercise, 2 hours post-exercise, 24 hours post-exercise
Concentration of blood glucose will be measured in serum
Changes in blood triglycerides
时间窗: Pre-breakfast (fasting glucose), 45 min post-breakfast (before exercise), immediately post-exercise, 1 hour post-exercise, 2 hours post-exercise, 24 hours post-exercise
Concentration of blood triglycerides will be measured in serum
Changes in blood insulin
时间窗: Pre-breakfast (fasting glucose), 45 min post-breakfast (before exercise), immediately post-exercise, 1 hour post-exercise, 2 hours post-exercise, 24 hours post-exercise
Concentration of blood insulin will be measured in serum
次要结局
- Changes in catalase(Pre-breakfast (fasting glucose), immediately post-exercise, 24 hours post-exercise)
- Changes in uric acid(Pre-breakfast (fasting glucose), immediately post-exercise, 24 hours post-exercise)
- Body height(At the baseline)
- Resting heart rate(At the baseline and before each trial)
- Heart rate during exercise(During exercise in each trial)
- Changes in reduced glutathione (GSH)(Pre-breakfast (fasting glucose), immediately post-exercise, 24 hours post-exercise)
- Changes in substances that react with thiobarbituric acid (TBARS)(Pre-breakfast (fasting glucose), immediately post-exercise, 24 hours post-exercise)
- Changes in total antioxidant capacity(Pre-breakfast (fasting glucose), immediately post-exercise, 24 hours post-exercise)
- Body mass(At the baseline and before each trial)
- Body fat(Before each trial)
- Changes in protein carbonyls(Pre-breakfast (fasting glucose), immediately post-exercise, 24 hours post-exercise)
研究者
Athanasios Z. Jamurtas
Principal Investigator
University of Thessaly
