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临床试验/NCT02481843
NCT02481843已完成不适用

Hyperoxia, Erythropoiesis and Tissue Oxygenation in Critically Ill Patient

Università Politecnica delle Marche1 个研究点 分布在 1 个国家目标入组 40 人开始时间: 2013年4月最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
发起方
入组人数
40
试验地点
1
主要终点
Effectiveness of Normobaric Oxygen Hyperoxia in increasing serum erythropoietin levels in critically ill patients

研究概览

简要总结

Prospective observational study in 40 adult critically ill patients. Patients were eligible if they were mechanically ventilated with an FiO2 ≤0.5 and PaO2/FiO2 ≥200 mmHg and hemodynamically stable with a hemoglobin ≥9 g/dL, no acute bleeding or need for blood transfusions, no renal failure, no chronic obstructive pulmonary disease. Twenty patients (hyperoxia group) underwent a 2-hour exposure to normobaric hyperoxia (FiO2 1.0), 20 patients were evaluated as controls. Serum erythropoietin (EPO) was measured at baseline, 24h and 48h. Serum Glutathione (GSH) and reacting oxygen species (ROS) were assessed at baseline (t0), after 2 hours of hyperoxia (t1) and 2 hours after the return to baseline FiO2 (t2). Sidestream dark field videomicroscopy was applied sublingually to assess the microvascular response to hyperoxia. Near infrared spectroscopy with a vascular occlusion test was applied at t0, t1, t2.

详细描述

Interventions:

Forty patients were enrolled in total. The first 20 patients (hyperoxia group) underwent a 2-hour period of normobaric hyperoxia (FiO2 1.0), according to the protocol applied in. No variation in the FiO2 was applied for the other 20 patients (control group). All patients were enrolled in the morning and hyperoxia was performed in the time range between 10am-2pm in order to minimize variability due to the circadian rhythm of EPO production. No variations to sedation or vasopressor dose were applied during the study period.

Measurements:

On the study day, measurements were taken at 2-hour intervals: baseline (t0), under 1.0 FiO2 (t1) and after returning to baseline FiO2 (t2). These included: body temperature, heart rate (HR), mean arterial pressure (MAP), arterial oxygen saturation (SaO2), arterial partial pressure of oxygen (PaO2) and carbon dioxide (PaCO2), PaO2/FiO2, arterial pH, bicarbonate, base excess) and central venous saturation (ScvO2) blood gases, arterial lactates, evaluation of the sublingual microcirculation and tissue oxygenation. The same measurements were performed in the control group at 2-hour intervals. In 24 patients (12 patients per group), arterial blood samples (10 mL) were taken at each time point and immediately centrifuged; plasma and serum were stored at -70°C for subsequent analyses. Serum EPO, reticulocyte count, hemoglobin (Hb) and hematocrit were measured at 8am in all patients on the study day, at 24 and 48 hours.

Microcirculation measurements with sidestream dark field imaging The sublingual microcirculation was evaluated with sidestream dark field (SDF) videomicroscopy (Microscan, Microvision Medical, Amsterdam, NL). This technique has been described in details elsewhere.

研究设计

研究类型
Observational
观察模型
Case Control
时间视角
Prospective

入排标准

年龄范围
18 Years 至 —(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Mechanical Ventilated Patients

排除标准

  • PaO2/FiO2 < 200
  • hemoglobin (Hb) <9 g/dL
  • acute bleeding or blood transfusions during the study period
  • any surgical interventions during the study period
  • acute or chronic renal failure
  • hemodynamic instability
  • chronic obstructive pulmonary disease
  • pregnancy
  • factors impeding the sublingual microcirculation evaluation (oral surgery or facial trauma)

结局指标

主要结局

Effectiveness of Normobaric Oxygen Hyperoxia in increasing serum erythropoietin levels in critically ill patients

时间窗: up to 2 day after FiO2=1 exposure

Blood samples to detect erythropoietin

次要结局

  • Hyperoxia and variations in circulating ROS(Before FiO2 = 1, after 2 hours of FiO2=1 exposure, 2 hours after the end of FiO2=1 exposure)
  • Effectiveness of Normobaric Oxygen Hyperoxia in increasing serum erythropoietin levels in critically ill patients after 1 day(Before FIO2 = 1 and at 1 day after FiO2 = 1 exposure)
  • Effects of hyperoxia on the sublingual microcirculation(Before FiO2, after 2 hours of FiO2=1 exposure, 2 hours after the end of FiO2=1 exposure)
  • Effects of hyperoxia on the peripheral microcirculation(Before FiO2 = 1, after 2 hours of FiO2=1 exposure, 2 hours after the end of FiO2=1 exposure)
  • Hyperoxia and variations in circulating nitric oxide(Before FiO2 = 1, after 2 hours of FiO2=1 exposure, 2 hours after the end of FiO2=1 exposure)
  • Hyperoxia and variations in circulating glutathione(Before FiO2 = 1, after 2 hours of FiO2=1 exposure, 2 hours after the end of FiO2=1 exposure)
  • Reticulocyte Count(Before FiO2 = 1, at 1 day and 2 day after FiO2=1 exposure)

研究者

发起方
Università Politecnica delle Marche
申办方类型
Other
责任方
Principal Investigator
主要研究者

Abele Donati, MD

Associate Professor and Medical Doctor

Università Politecnica delle Marche

研究点 (1)

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