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NCT Number: NCT01978158

Effects of Oxygen Status on Endotoxemia Induced Inflammation and Hypoxia Inducible Factor-1α

Oxygen is a widely available gas that is cheap, easy to get and extensively used in medicine. From animal studies it has become apparent that increasing or lowering the degree of oxygen in the blood, the inflammatory response can be altered. We will investigate of this is also true in humans by increasing, lowering or keeping oxygen levels normal while giving healthy subjects a short inflammatory stimulus.

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Key information

Age range

18 year–35 year

Sex eligibility

Male

Study type

Interventional

Phase

Phase 1 / Phase 2

Primary location

Intensive Care Medicine

Nijmegen, Gelderland, 6500HB, Netherlands

About this study

The primary objective of the study is to determine the effects of hyperoxia and hypoxia compared to normoxia in the human endotoxemia model on the innate immune reponse in healthy volunteers.

A parallel, randomized study in healthy male volunteers. The subjects will be randomized to hypoxia, hyperoxia, or normoxia, and will all undergo experimental human endotoxemia (administration of 2 ng/kg LPS iv).

In the hypoxia group: the subjects will breathe an individualized mix of nitrogen and room air for 3.5 hours using an air-tight respiratory helmet. The gas mixture will be adjusted to achieve a saturation of 80-85%. In the hyperoxia group, subjects will breathe 100% oxygen for 3.5 hours using the same respiratory helmet. In the normoxia group, subjects will breathe room air (21% oxygen, 79% nitrogen) also wearing the respiratory helmet. 1 hour after oxygen status adjustment (t=0), all subject will be administered an intravenous bolus (2ng/kg) of LPS derived from E coli O:113. 2.5 hours after LPS administration, the helmets will be removed and all subjects will breathe ambient room air.

The primary study endpoint is the difference in plasma cytokines between the hypoxia and normoxia group, and between the hyperoxia and normoxia group. Secondary objectives include HIF-1α protein and mRNA, aHIF mRNA expression in circulating leukocytes, measures of ROS, leukocyte phagocytosis, and cytokine production by leukocytes stimulated ex vivo with various inflammatory stimuli, and measurement of basic hemodynamic and ventilatory parameters and temperature.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Written informed consent to participate in this trial
  • Male subjects aged 18 to 35 years inclusive
  • Healthy as determined by medical history, physical examination, vital signs, 12-lead electrocardiogram, and clinical laboratory parameters

Exclusion criteria

  • Use of any medication(including herbal remedies and vitamin/mineral supplements) or recreational drugs within 7 days prior to profiling day
  • Smoking
  • Use of caffeine, or alcohol or within 1 day prior to profiling day
  • Previous participation in a trial where LPS was administered
  • Surgery or trauma with significant blood loss or blood donation within 3 months prior to profiling day
  • Participation in another clinical trial within 3 months prior to profiling day.
  • History, signs or symptoms of cardiovascular disease
  • An implant that in the opinion of the investigator may make invasive procedures risky for the subject due to the increased risks associated with a possible infection.
  • Subject has an implanted active cardiac device (ICD, IPG and/or CRT) Implanted active neurostimulation device
  • Subject has internal jugular vein that cannot be accessed
  • History of vaso-vagal collapse or of orthostatic hypotension
  • History of atrial or ventricular arrhythmia
  • Resting pulse rate ≤45 or ≥100 beats / min
  • Hypertension (RR systolic >160 or RR diastolic >90)
  • Hypotension (RR systolic <100 or RR diastolic <50)
  • Conduction abnormalities on the ECG consisting of a 1st degree atrioventricular block or a complex bundle branch block
  • Subject is diagnosed with epilepsy or history of seizures
  • Renal impairment: plasma creatinine >120 μmol/L
  • Liver function abnormality: alkaline phosphatase>230 U/L and/or ALT>90 U/L
  • Coagulation abnormalities: APTT or PT > 1.5 times the reference range
  • History of asthma
  • Immuno-deficiency CRP > 20 mg/L, WBC > 12x109/L, or clinically significant acute illness, including infections, within 2 weeks before profiling day
  • Known or suspected of not being able to comply with the trial protocol - Inability to personally provide written informed consent (e.g. for linguistic or mental reasons) and/or take part in the study.

Treatment and study plan

lipopolysaccharide

Drug

LPS is used to elicit an inflammatory response in all subjects

Other names: Purified LPS from Escherischa coli (O:113)

Primary outcomes

  1. Plasma TNF-alpha concentration following LPS administration

    Time frame: 1 day

    Plasma TNF-α concentration after LPS administration (Area Under Curve); comparison of subjects treated with hypoxia compared to normoxia and hyperoxia compared to hypoxia

Secondary outcomes

  1. Hypoxia Inducible Factor 1 alpha in circulating leukocytes

    Time frame: 1 day

    Hypoxia Inducible Factor 1 alpha in circulating neutrophils, lymfocytes and monocytes as measured with flow cytometry

  2. Hypoxia Inducible Factor mRNA and anti Hypoxia Inducible Factor mRNA in circulating leukocytes

    Time frame: 24 hours

  3. Reactive Oxygen Species in circulating leukocytes

    Time frame: 1 day

  4. Phagocytic function of circulating leukocytes

    Time frame: 1 day

  5. cytokine production after ex vivo stimulation of leukocytes

    Time frame: 1 day

  6. circulating cytokines (including but not limited to IL-6, IL-10, IL-1RA)

    Time frame: 1 day

  7. Hemodynamic parameters

    Time frame: 1 day

    Blood pressure, heart frequency, cardiac output measurement

  8. ventilatory response

    Time frame: 1 day

    Measures of ventilation: respiratory rate, blood gas changes

  9. adenosine metabolism

    Time frame: 1 day

    urine and plasma adenosine,adenosine receptor mRNA, purines

  10. alkaline phosphatase

    Time frame: 1 day

  11. cognitive function

    Time frame: 1 day

    neuropsychologic assessment of cognitive function

  12. Hepcidin and iron parameters

    Time frame: 1 day

  13. catecholamines and cortisol

    Time frame: 1 day

    adrenaline, noradrenaline, dopamine and cortisol

  14. Neutrophilic function

    Time frame: 1 day

  15. body temperature

    Time frame: 1 day

  16. oxygen saturation and arterial blood gas

    Time frame: 1

  17. subjective symptom scores

    Time frame: 1 day

  18. high sensitive troponine

    Time frame: 1 day

  19. iFABP

    Time frame: 1 day

  20. brain specific proteins

    Time frame: 1 day

  21. endocan

    Time frame: 1 day

  22. downstream targets of HIF

    Time frame: 1 day

    adrenomedullin, VEGF, EPO

  23. heart rate variability

    Time frame: 1 day

  24. kidney injury markers in plasma and urine

    Time frame: 2 days

  25. microbiome in feces

    Time frame: -1 day untill 1 week

  26. markers of immunoparalysis

    Time frame: 1 day

    monocytic histone 3 lysine 4 trimethylation of the promotor region of pro-inflammatory genes, ex viv production of proinflammatory cytokines, HLA-DR expression on moncytes.

  27. measures of coagulation and plateletfunction

    Time frame: 1 day

    platelet activation and platelet function, thrombin generation and other coagulation parameters, hematolocial infection profile using hematology analyser

  28. meausures of coagulation and fibrinolysis

    Time frame: 1 day

    thrombin generation, thrombocyte function, ROTEM, plasmatic coagulation, fibrinolysis parameters

Sponsors and collaborators

Lead sponsor

Radboud University Medical Center

Other

Registry information

Official study title

Effects of Oxygen Status on Endotoxemia Induced Inflammation and Hypoxia Inducible Factor-1α. A Pilot Proof of Principle Study

Important dates

Study start
2013
Primary completion
2013
Study completion
2013
First posted
Nov 7, 2013
Registry last updated
May 20, 2015

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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