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Published on: January 22, 2017
Clinical treatments for mitochondrial dysfunctions after brain injury
1Department of Neurosurgery, University of Messina, Messina, Italy.
Purpose Of Review:
This review provides a comprehensive look at the evidence supporting the role of mitochondrial dysfunction in promoting neuronal death after acute brain injury, and critically discusses the most recent proposed therapies that could limit the deleterious effects of such a dysfunction on neurological outcome.
Recent Findings:
Following acute brain injury, disruption of calcium homeostasis, overproduction of reactive oxygen species, and opening of the mitochondrial permeability transition pore, are key factors in promoting mitochondrial dysfunction, with ensuing activation of either necrotic or apoptotic cell death pathways. Growing interest has been focused on developing new therapeutic strategies able to oppose these mechanisms. Several pharmacological agents are currently under investigation, including novel calcium channel blockers and antioxidants, uncoupling proteins and mitochondrial permeability transition pore inhibitors. Although a 'magic bullet' has not yet been identified, the results of both preclinical and clinical studies are encouraging.
Summary:
Therapeutic interventions directly targeting processes and mechanisms responsible for mitochondrial dysfunction, may offer neuroprotection in brain-injured patients. The multifactorial cause of mitochondrial dysfunction suggests, however, the need for further studies aimed at clarifying optimal dose and time for drug administration, as well as the logical combination/sequence of those approaches that may ultimately achieve improvement in neurological outcome.
Insights
Mitochondrial dysfunction drives neuronal death after brain injury. Therapies targeting these mechanisms show promise for neuroprotection, though further research is needed for optimal treatment strategies.
Area of Science:
- Neuroscience
- Cell Biology
- Pharmacology
Background:
- Mitochondrial dysfunction is a key factor in neuronal death following acute brain injury.
- Mechanisms include calcium homeostasis disruption, reactive oxygen species overproduction, and mitochondrial permeability transition pore opening.
Purpose of the Study:
- To review evidence on mitochondrial dysfunction in acute brain injury.
- To discuss novel therapeutic strategies targeting mitochondrial dysfunction for neuroprotection.
Main Methods:
- Comprehensive literature review of preclinical and clinical studies.
- Analysis of therapeutic agents targeting mitochondrial pathways.
Main Results:
- Mitochondrial dysfunction activates necrotic and apoptotic cell death pathways post-brain injury.
- Investigational therapies include calcium channel blockers, antioxidants, uncoupling proteins, and pore inhibitors.
- Preclinical and clinical results are encouraging, though no single 'magic bullet' exists.
Conclusions:
- Targeting mitochondrial dysfunction offers potential neuroprotection for brain-injured patients.
- Further studies are required to optimize drug dosage, timing, and combinations for improved neurological outcomes.
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