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Published on: September 11, 2017
Gene expression profiling for discovery of novel targets in human traumatic brain injury
Taura L Barr1, Sheila Alexander, Yvette Conley
1West Virginia University School of Nursing & Center for Neuroscience, Morgantown, WV, USA. tbarr@hsc.wvu.edu
Abstract:
Several clinical trials have failed to demonstrate a significant effect on outcome following human traumatic brain injury (TBI) despite promising results obtained in preclinical animal studies. These failures may be due in part to a misinterpretation of the findings obtained in preclinical animal models of TBI, a misunderstanding of the complexity of the human response to TBI, limited knowledge about the biological pathways that interact to contribute to good and bad outcomes after brain injury, and the effects of genomic variability and environment on individual recovery. Recent publications suggest that data obtained from gene expression profiling studies of complex neurological diseases such as stroke, multiple sclerosis (MS), Alzheimer's and Parkinson's may contribute to a more informed understanding of what affects outcome following TBI. These data may help to bridge the gap between successful preclinical studies and negative clinical trials in humans to reveal novel targets for therapy. Gene expression profiling has the capability to identify biomarkers associated with response to TBI, elucidate complex genetic interactions that may play a role in outcome following TBI, and reveal biological pathways related to brain health. This review highlights the current state of the literature on gene expression profiling for neurological disease and discusses its ability to aid in unraveling the variable human response to TBI and the potential for it to offer treatment strategies in an area where we currently have limited therapeutic options primarily based on supportive care.
Insights
Gene expression profiling offers new insights into traumatic brain injury (TBI) outcomes. Analyzing gene expression data from neurological diseases may bridge the gap between animal studies and human trials for TBI therapies.
Area of Science:
- Neuroscience
- Genomics
- Translational Medicine
Background:
- Clinical trials for traumatic brain injury (TBI) often fail despite promising preclinical data.
- Human TBI response complexity, limited pathway knowledge, and genetic/environmental factors hinder treatment development.
Purpose of the Study:
- To explore how gene expression profiling in neurological diseases can inform TBI research.
- To identify potential therapeutic targets and biomarkers for TBI by leveraging existing genomic data.
Main Methods:
- Review of current literature on gene expression profiling in neurological diseases (stroke, MS, Alzheimer's, Parkinson's).
- Analysis of how these profiling data can elucidate TBI's complex biological pathways and individual variability.
Main Results:
- Gene expression profiling can identify TBI biomarkers and associated genetic interactions.
- This approach may reveal biological pathways crucial for brain health and recovery after TBI.
Conclusions:
- Gene expression profiling holds promise for understanding variable human responses to TBI.
- It could lead to novel therapeutic strategies beyond current supportive care for TBI patients.
Related Concept Videos
Traumatic Brain Injury l: Introduction
Brain Imaging
These technologies include computerized axial tomography (CAT or CT scans), positron-emission tomography (PET scans), magnetic resonance imaging (MRI), functional magnetic resonance imaging (fMRI), and Transcranial Magnetic Stimulation (TMS).
