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临床试验/NCT02631083
NCT02631083已完成不适用

The Impact of a Low Glycaemic Index (GI) Diet on Daily Blood Glucose Profiles and Energy Flux in Male Chinese Adults.

Clinical Nutrition Research Centre, Singapore0 个研究点目标入组 15 人开始时间: 2014年11月14日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
已完成
发起方
入组人数
15
主要终点
Substrate oxidation

研究概览

简要总结

The study is carried out to find out the inclusion of high and low glycaemic index foods to daily meals and how they impact 24 hour blood glucose fluctuations and energy regulation.

详细描述

The GI is a method of classifying foods based on the food's ability to raise the blood glucose level. Low GI foods are recommended as they have a lower impact on blood glucose concentrations. The research sets out to determine the effect of GI on 24 hour blood glucose profiles and energy regulation in Asians. Healthy, normal-weight, Chinese males will be recruited. There will be two sessions (consisting of four days for each session) where they will consume either a high or low GI breakfast, lunch, snack (in the whole body calorimeter), and a high or low glycaemic index dinner at home. They will take part in two test sessions (each spanning over 3 days) with at least five days in between the two sessions. Their glycaemic response will be measured using a Continuous Glucose Monitoring System (CGMS) throughout the period, while substrate oxidation will be measured over 10 hours in the calorimeter (from breakfast, lunch and snack). This study specifically attempts to see how having high and low GI meals impact on blood glucose levels and energy regulation in Asians. The study is important in that it will be the first of its kind in the whole body calorimeter and enable us to compute the rate of fat synthesis and how it is modulated when subjects are fed a high GI diet (increased glucose excursions) and a low GI diet ( blunted glucose) over 24 hours in healthy Asians. Obesity and diabetes rates are increasing exponentially in Asian populations and Singapore is no exception. Devising ways and means to staunch the escalation is therefore a priority. The findings of the research will contribute towards the long-term objectives of developing Asian specific dietary guidelines for weight and glycaemic control. The study data will also be important for the provision of practical food-based advocacy for better weight and glycaemic control in Singaporeans.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Crossover
主要目的
Other
盲法
None

入排标准

年龄范围
21 Years 至 40 Years(Adult)
性别
Male
接受健康志愿者

入选标准

  • Chinese, male
  • Age between 21-40 years
  • Body mass index between 17 to 25 kg/m2
  • Normal blood pressure (<140/80 Hgmm)
  • Fasting blood glucose < 6 mmol/L

排除标准

  • Having any metabolic diseases (such as diabetes, hypertension etc)
  • On prescription medication
  • Having glucose 6-phosphate dehydrogenase deficiency (G6PD)
  • Partaking in sports at the competitive and/or endurance levels
  • Allergic/intolerant to any of the test foods
  • Intentionally restricting food intake

研究组 & 干预措施

Breakfast, lunch, snack and dinner (high GI)

Experimental

Subjects will consume meals which are high glycemic index for breakfast (Honey stars cereal), lunch (glutinous rice meal) and snack (white bread and jam) in the whole body calorimeter. A take-away high glycemic index dinner will be provided.

干预措施: Breakfast, lunch, snack and dinner (Other)

Breakfast, lunch, snack and dinner (low GI)

Experimental

Subjects will consume meals which are low glycemic index for breakfast (All bran cereal), lunch (basmati rice meal) and snack (multigrain bread and sugar-free jam) in the whole body calorimeter. A take-away low glycemic index dinner will be provided.

干预措施: Breakfast, lunch, snack and dinner (Other)

结局指标

主要结局

Substrate oxidation

时间窗: 2 hours post consumption

The carbohydrate and fat oxidation (i.e Respiratory Quotient) after consumption of low and high GI test foods measured 2 hours post consumption using indirect calorimetry in a whole body calorimeter. This is done over 10 hours in the whole body calorimeter measured for breakfast, lunch and snack only

Glycaemic response The blood glucose response to low and high GI test foods measured 2 hours post consumption using the Continuous Glucose Monitoring System (CGMS)

时间窗: 2 hours post consumption

The blood glucose response to low and high GI test foods measured 2 hours post consumption using the Continuous Glucose Monitoring System (CGMS) The blood glucose response to low and high GI test foods measured 2 hours post consumption using the Continuous Glucose Monitoring System (CGMS)

Daily blood glucose profile

时间窗: 24 hours

The daily total blood glucose response is measured for each low and high GI treatment as the area under the curve over 24 hours using CGMS for breakfast, lunch, snack and dinner.

次要结局

未报告次要终点

研究者

发起方
Clinical Nutrition Research Centre, Singapore
申办方类型
Other Gov
责任方
Principal Investigator
主要研究者

JeyaKumar Henry

Principal Investigator

Clinical Nutrition Research Centre, Singapore

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