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NCT Number: NCT00879892

Effect of Xenon and Therapeutic Hypothermia, on the Brain and on Neurological Outcome Following Brain Ischemia in Cardiac Arrest Patients

The main purpose of this study is to explore whether xenon is neuroprotective in humans. In addition, the purpose is to explore the underlying mechanisms for the possible synergistic neuroprotective interaction of xenon and hypothermia in patients suffering cerebral ischemia post cardiac arrest, by undertaking brain imaging to evaluate their effects on cerebral hypoxia, neuronal loss and mitochondrial dysfunction. In addition, the investigators aim to correlate these findings with neurological outcome to determine surrogate markers of favourable clinical outcome at six months.

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Key information

Age range

18 year–80 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 2

Primary location

Department of Cardiology, Meilahti, Helsinki University Hospital, Helsinki, Finland

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About this study

If cardiac resuscitation is successful, the state-of-the-art management is to actively cool these patients into a state of moderate hypothermia (32-34º C) for 24 hours in an intensive care unit. Guidelines regarding the use of hypothermia following witnessed cardiac arrest have been formally adopted by the European Resuscitation Council as well as the American Heart Association. Therapeutic hypothermia provides a significant but moderate improvement in these patients. Thus, strategies designed to increase the efficacy of therapeutic hypothermia are needed.

Preclinical animal studies have now demonstrated a remarkable neuroprotective interaction with hypothermia in a synergistic manner. The data suggest that xenon's neuroprotective effect can be triggered with subanesthetic concentrations in humans when combined with modest hypothermia.

The aim of this study is to explore whether xenon is neuroprotective in humans. We also explore whether xenon in combination with standard hypothermia treatment has better neuroprotective effect than can be achieved with the hypothermia treatment alone in the patients who have experienced global ischemic brain injury after out-of-hospital cardiac arrest (OHCA).

Hundred-and- ten patients who have experienced ventricular fibrillation or non-perfusive ventricular tachycardia as initial cardiac rhythm will be enrolled and they will be randomized into two treatment groups: 1) standard hypothermia treatment for 24 hours, 2) xenon inhalation combined with standard hypothermia treatment for 24 hours.

Sophisticated brain imaging techniques will be performed before intervention (i.e. standard CT scan), within 24 hours after intervention (i.e. positron emission tomography), and on day 3 and on day 10 after cardiac arrest (i.e. various proton magnetic resonance imaging techniques) to identify ischemic burden, injured tissue and deranged energy metabolism in the brain.

Our objective is to show a significant reduction in the degree of severity of the ischemic brain injury in the hypothermia+Xenon group as compared with the hypothermia group.

Who can participate

Healthy volunteers accepted: No

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

Inclusion criteria

  • Ventricular fibrillation or non-perfusive ventricular tachycardia as initial cardiac rhythm
  • The 1st attempt at resuscitation by emergency medical personnel must appear within 15 minutes after the collapse
  • The cause for collapse should be considered primary as cardiogenic and the return of spontaneous circulation (ROSC) should have been gained in 45 minutes after the collapse
  • Patient should be still unconscious in the emergency room
  • Age: 18 - 80 years
  • Obtained consent within 4 hours after arrival to the hospital

Exclusion criteria

  • Hypothermia (< 30°C core temperature)
  • Unconsciousness before cardiac arrest (cerebral trauma, spontaneous cerebral hemorrhages, intoxications etc.)
  • Response to verbal commands after the return of spontaneous circulation and before randomization
  • Pregnancy
  • Coagulopathy
  • Terminal phase of a chronic disease
  • Systolic arterial pressure < 80 mmHg or mean arterial pressure < 60 mmHg for over 30 min period after ROSC
  • Evidence of hypoxemia (arterial oxygen saturation < 85%) for > 15 minutes after ROSC and before randomization.
  • Factors making participation in follow-up unlikely
  • Enrolment in another study

Treatment and study plan

Xenon

Drug

Gas, 24 hour inhalation, en tidal target concentration 40%

Hypothermia

Other

24 hour, target core temperature 33

Primary outcomes

  1. Primary outcome is to show a significant reduction in the degree of severity of the ischemic brain injury in the hypothermia+Xenon group as compared with the hypothermia group, reflected by various MRI techniques

    Time frame: within 24 hours after treatment and 10 +/-2 days after cardiac arrest

    Power analysis was done with fractional anisotropy of diffusion tensor MRI

Secondary outcomes

  1. Neurological outcome

    Time frame: 6 months after cardiac arrest

  2. A transthoracic echocardiography will be performed for all feasible patients to investigate cardiac safety of the treatments

    Time frame: Before, during and after treatments

  3. Mortality

    Time frame: 6 months

  4. Complication rate

    Time frame: 7 days

    epileptic status, severe bleeding, pneumonia, sepsis, pancreatitis, acute kidney injury according to RIFLE, pulmonary oedema, arrhythmias

  5. Morbidity

    Time frame: 6 months

    cardiac and cerebral morbidity

Sponsors and collaborators

Lead sponsor

Turku University Hospital

Other Gov

Collaborators

  • Academy of Finland
  • University of Turku

Registry information

Official study title

Phase 2 Study of Effect of Xenon, in Combination With Therapeutic Hypothermia, on the Brain and on Neurological Outcome Following Brain Ischemia in Cardiac Arrest Patients

Acronym: Xe-hypotheca

Important dates

Study start
2009
Primary completion
2014
Study completion
2014
First posted
Apr 13, 2009
Registry last updated
Jan 19, 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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