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临床试验/NCT03102476
NCT03102476已完成不适用

A Study to Assess Environmental Effects of Temperature and Humidity on Pharmacokinetics and Pharmacodynamics of Prandial Insulin in Subjects With Type 1 Diabetes

University of Hull1 个研究点 分布在 1 个国家目标入组 10 人开始时间: 2016年6月最近更新:
适应症
干预措施
相关药物

试验速览

阶段
不适用
状态
已完成
入组人数
10
试验地点
1
主要终点
Area under the glucose infusion rate curve from 0 hours until the end of clamp.

研究概览

简要总结

Type 1 Diabetes mellitus (T1D) is characterized by βcell destruction and a long life requirement of exogenous insulin. The bolus basal insulin regimen is a widely accepted therapy concept to treat hyperglycaemia in patients with T1D. This concept requires a very good knowledge of the individuals prandial and basal insulin requirements. However, insulin requirement depends on insulin absorption from the injection site and the individual's insulin sensitivity which relies on a number of effects including body composition, inflammatory processes and environmental factors. Climatic factors such as differences in air temperature could affect both, insulin absorption and insulin sensitivity as suggested by recent reports. For instance, it is reported that hot baths can accelerate the absorption of short acting but not of long acting insulin formulations from the subcutaneous depot. In addition, local warming of the injection site by a novel device (InsuPatch) results as well in an accelerated insulin action profile of short acting insulins. Moreover, Berglund et al. reported seasonal variations in insulin sensitivity in elderly men with increased insulin sensitivity during summer time.

Although an effect of temperature on insulin absorption and action can be assumed and was subject to current clinical trials, there is only little knowledge on the effect of humidity and the cumulative effect of humidity and temperature on insulin pharmacodynamics and pharmacokinetics. For subjects with type 2 diabetes it was reported that accommodation to high temperatures and moist air of more than 75% is impaired compared to healthy subjects as determined by skin blood flow, temperature and moisture. Although it can be estimated that changes in blood flow due to hot and moist air affect the pharmacokinetics and pharmacodynamics of subcutaneous prandial insulins, to our knowledge no such study in subjects with T1D using the euglycaemic clamp technique was carried out yet. In order to assess the effect of temperature and humidity on insulin action, subjects with type 1 diabetes will be administered a single dose of short acting insulin in an environmental chamber either at 15°C or a warm environment of 40°C with either a low or high humidity (10% vs. 90%). Moreover, an exploratory part of the trial will evaluate the measurement performance of several blood glucose meters under the experimental climatic situations.

详细描述

BACKGROUND Type 1 Diabetes mellitus (T1DM) is characterised by β-cell destruction and a lifelong requirement of exogenous insulin. The basal-bolus insulin regimen is widely accepted therapy to treat hyperglycaemia in patients with T1DM. This concept requires a very good knowledge of the individual's prandial and basal insulin requirements. However, insulin requirement depends on insulin absorption from the injection site and the individual's insulin sensitivity that relies on a number of factors including body composition, inflammatory processes and environmental factors. Environmental factors such as differences in air temperature could affect both, insulin absorption and insulin sensitivity as suggested by recent reports. For instance, it is reported that hot baths can accelerate the absorption of short-acting but not of long-acting insulin formulations from the subcutaneous depot. In addition, local warming of the injection site by a novel device (InsuPatch) results in an accelerated insulin-action profile of short-acting insulins. Moreover, Berglund et al. reported seasonal variations in insulin sensitivity in elderly men with increased insulin sensitivity during summer time.

Although an effect of temperature on insulin absorption and action can be assumed, there is only little knowledge on the effect of humidity and the cumulative effect of humidity and temperature on insulin pharmacodynamics and pharmacokinetics. For subjects with type 2 diabetes it was reported that accommodation to high temperatures and moist air of more than 75% is impaired compared to healthy subjects as determined by skin blood flow, temperature and moisture.

Although it can be estimated that changes in blood flow due to hot and moist air affect the pharmacokinetics and pharmacodynamics of subcutaneous prandial insulins, to our knowledge no such study in subjects with T1D using the euglycaemic clamp technique has been performed. In order to assess the effect of temperature and humidity on insulin action, subjects with type 1 diabetes will be given a single dose of short-acting insulin in an environmental chamber either at 15°C or a warm environment of 30°C with either a low or high humidity (10% vs. 60%).

TRIAL OBJECTIVES The objective of this trial is to assess the effect of different temperatures and humidity levels on the pharmacokinetic and pharmacodynamic profiles of short-acting insulin in subjects with type 1 diabetes mellitus.

TRIAL DESIGN The trial will be a single-centre, open label, 3-way cross-over, euglycaemic glucose clamp trial in subjects with type 1 diabetes mellitus. The pharmacodynamic and pharmacokinetic properties of insulin Humalog dosed at 0.2 U/kg will be investigated.

研究设计

研究类型
Interventional
分配方式
Na
干预模型
Single Group
主要目的
Basic Science
盲法
None

入排标准

年龄范围
18 Years 至 55 Years(Adult)
性别
Male
接受健康志愿者

入选标准

  • Male subjects
  • Diabetes mellitus type 1
  • HbA1c ≤ 9.0 %
  • Total insulin dose of < 1.2 U/kg/day
  • Age between 18 and 55 years, both inclusive
  • Body mass index (BMI) between 18.0 and 28.0 kg/m2, both inclusive
  • Informed consent must be obtained for all volunteers in writing

排除标准

  • Known or suspected allergy to insulin.
  • Recurrent major hypoglycaemia or hypoglycaemic unawareness as judged by the Investigator or hospitalization for diabetic ketoacidosis during the previous 6 months.
  • Clinically significant diabetic neuropathy, in particular autonomous diabetic neuropathy.
  • Supine blood pressure at screening (after resting for 5 min in supine position) outside the range of 90-140 mmHg for systolic or 50-90 mmHg for diastolic (excluding white-coat hypertension; therefore, if a repeated measurement shows values within the range, the subject can be included in the trial) and/or resting supine heart rate outside the range 50 -90 beats per minute. This exclusion criterion also pertains to subjects being on antihypertensives.
  • Treatment with any other investigational drug within 3 months prior to screening. Participation in a clinical research trial in last 3 months.

研究组 & 干预措施

Patients with Type 1 Diabetes

Other

Using euglycaemic clamp, the effect of different temperatures and humidity levels will be assessed on the pharmacokinetic and pharmacodynamic profiles of short-acting insulin Humalog.

干预措施: Humalog (Drug)

结局指标

主要结局

Area under the glucose infusion rate curve from 0 hours until the end of clamp.

时间窗: 1 Year

Onset of action, time from trial product administration until the blood glucose concentration has decreased at least 0.3 mmol/L (5 mg/dL) from the baseline

时间窗: I year

次要结局

  • Area under the glucose infusion rate curve from 0 hours until 4 hours(1 year)
  • Maximum glucose infusion rate(1 year)
  • Time to maximum glucose infusion rate curve(1 year)
  • Area under the glucose infusion rate curve from 0 hours until 2 hours(1 year)
  • Area under the glucose infusion rate curve from 0 hours until 6 hours(1 year)
  • Area under the glucose infusion rate curve from 4 hours until 6 hours(1 year)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Thozhukat Sathyapalan

Professor

University of Hull

研究点 (1)

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