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Published on: March 3, 2021
Bench-to-bedside review: Hypothermia in traumatic brain injury
H Louise Sinclair1, Peter Jd Andrews
1Department of Anaesthesia, Critical Care and Pain Medicine, University of Edinburgh, Western General Hospital, Crewe Road, Edinburgh, EH4 2XU, UK. l.sinclair@ed.ac.uk
Insights
Therapeutic hypothermia shows promise for reducing intracranial pressure and protecting the brain after traumatic brain injury (TBI). This approach may offer a new neuroprotective strategy for TBI patients, addressing limitations of current treatments.
Area of Science:
- Neurology
- Critical Care Medicine
- Neurotrauma
Background:
- Traumatic brain injury (TBI) is a leading cause of death and disability worldwide, with significant impact in the European Union.
- Current TBI treatments focus on brain perfusion and swelling management, but established therapies for raised intracranial pressure (ICP) have significant drawbacks and limited evidence.
- Therapeutic hypothermia has proven effective in improving outcomes for cardiac arrest and neonatal asphyxia, with rapid implementation possible in these patient groups.
Purpose of the Study:
- To review the bench-to-bedside evidence supporting the use of therapeutic hypothermia in traumatic brain injury (TBI).
- To explore the potential neuroprotective benefits of hypothermia in TBI patients.
- To examine the role of hypothermia in reducing intracranial pressure (ICP) in TBI.
Main Methods:
- Review of existing scientific literature and clinical trial data.
- Analysis of evidence from laboratory models and clinical applications of therapeutic hypothermia.
- Focus on the development of the Eurotherm3235Trial protocol for TBI.
Main Results:
- Therapeutic hypothermia is effective in improving neurological outcomes in cardiac arrest and neonatal asphyxia.
- Delayed intervention with hypothermia in TBI is often due to diagnostic procedures like CT scans.
- Hypothermia presents a potential adjunctive therapy for TBI, possibly reducing ICP and offering neuroprotection.
Conclusions:
- Current treatments for elevated ICP in TBI lack strong evidence and carry risks.
- Therapeutic hypothermia offers a promising neuroprotective strategy for TBI, potentially mitigating secondary brain injury.
- Further research and clinical trials, such as the Eurotherm3235Trial, are crucial to establish the efficacy of hypothermia in TBI management.
Abstract:
Traumatic brain injury remains a major cause of death and severe disability throughout the world. Traumatic brain injury leads to 1,000,000 hospital admissions per annum throughout the European Union. It causes the majority of the 50,000 deaths from road traffic accidents and leaves 10,000 patients severely handicapped: three quarters of these victims are young people. Therapeutic hypothermia has been shown to improve outcome after cardiac arrest, and consequently the European Resuscitation Council and American Heart Association guidelines recommend the use of hypothermia in these patients. Hypothermia is also thought to improve neurological outcome after neonatal birth asphyxia. Cardiac arrest and neonatal asphyxia patient populations present to health care services rapidly and without posing a diagnostic dilemma; therefore, therapeutic systemic hypothermia may be implemented relatively quickly. As a result, hypothermia in these two populations is similar to the laboratory models wherein systemic therapeutic hypothermia is commenced very soon after the injury and has shown so much promise. The need for resuscitation and computerised tomography imaging to confirm the diagnosis in patients with traumatic brain injury is a factor that delays intervention with temperature reduction strategies. Treatments in traumatic brain injury have traditionally focussed on restoring and maintaining adequate brain perfusion, surgically evacuating large haematomas where necessary, and preventing or promptly treating oedema. Brain swelling can be monitored by measuring intracranial pressure (ICP), and in most centres ICP is used to guide treatments and to monitor their success. There is an absence of evidence for the five commonly used treatments for raised ICP and all are potential 'double-edged swords' with significant disadvantages. The use of hypothermia in patients with traumatic brain injury may have beneficial effects in both ICP reduction and possible neuro-protection. This review will focus on the bench-to-bedside evidence that has supported the development of the Eurotherm3235Trial protocol.
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