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"Omics" in traumatic brain injury : novel approaches to a complex disease

Abu Hamdeh, Sami (author)
Uppsala University,Uppsala universitet,Enblad: Neurokirurgi
Tenovuo, Olli (author)
Univ Turku, Turku Brain Injury Ctr, Turku, Finland; Turku Univ Hosp, Turku, Finland,University of Turku
Peul, Wilco (author)
Leiden Univ, HAGA, Neurosurg Ctr Holland, HMC, The Hague, Netherlands; Leiden Univ, LUMC, Neurosurg Ctr Holland, HMC, The Hague, Netherlands; Leiden Univ, HAGA, Neurosurg Ctr Holland, HMC, Leiden, Netherlands; Leiden Univ, LUMC, Neurosurg Ctr Holland, HMC, Leiden, Netherlands,Leiden University Medical Centre
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Marklund, Niklas (author)
Uppsala University,Lund University,Lunds universitet,Uppsala universitet,Enblad: Neurokirurgi,Lund Univ, Skåne Univ Hosp, Dept Clin Sci Lund, Neurosurg, Lund, Sweden,Neurokirurgi,Sektion IV,Institutionen för kliniska vetenskaper, Lund,Medicinska fakulteten,LUBIN Lab- Lunds laboratorium för neurokirurgisk hjärnskadeforskning,Forskargrupper vid Lunds universitet,Neurosurgery,Section IV,Department of Clinical Sciences, Lund,Faculty of Medicine,LUBIN Lab- Lund Brain Injury laboratory for Neurosurgical research,Lund University Research Groups
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 (creator_code:org_t)
2021-07-17
2021
English.
In: Acta Neurochirurgica. - : Springer Nature. - 0001-6268 .- 0942-0940. ; 163:9, s. 2581-2594
  • Research review (peer-reviewed)
Abstract Subject headings
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  • BackgroundTo date, there is neither any pharmacological treatment with efficacy in traumatic brain injury (TBI) nor any method to halt the disease progress. This is due to an incomplete understanding of the vast complexity of the biological cascades and failure to appreciate the diversity of secondary injury mechanisms in TBI. In recent years, techniques for high-throughput characterization and quantification of biological molecules that include genomics, proteomics, and metabolomics have evolved and referred to as omics.MethodsIn this narrative review, we highlight how omics technology can be applied to potentiate diagnostics and prognostication as well as to advance our understanding of injury mechanisms in TBI.ResultsThe omics platforms provide possibilities to study function, dynamics, and alterations of molecular pathways of normal and TBI disease states. Through advanced bioinformatics, large datasets of molecular information from small biological samples can be analyzed in detail and provide valuable knowledge of pathophysiological mechanisms, to include in prognostic modeling when connected to clinically relevant data. In such a complex disease as TBI, omics enables broad categories of studies from gene compositions associated with susceptibility to secondary injury or poor outcome, to potential alterations in metabolites following TBI.ConclusionThe field of omics in TBI research is rapidly evolving. The recent data and novel methods reviewed herein may form the basis for improved precision medicine approaches, development of pharmacological approaches, and individualization of therapeutic efforts by implementing mathematical “big data” predictive modeling in the near future.

Subject headings

MEDICIN OCH HÄLSOVETENSKAP  -- Klinisk medicin -- Neurologi (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Clinical Medicine -- Neurology (hsv//eng)
MEDICIN OCH HÄLSOVETENSKAP  -- Medicinska och farmaceutiska grundvetenskaper -- Neurovetenskaper (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Basic Medicine -- Neurosciences (hsv//eng)

Keyword

Traumatic brain injury
Mechanisms
Epigenetics
Metabolomics
Genetics
Epigenetics
Genetics
Mechanisms
Metabolomics
Traumatic brain injury

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Abu Hamdeh, Sami
Tenovuo, Olli
Peul, Wilco
Marklund, Niklas
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MEDICAL AND HEALTH SCIENCES
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and Neurology
MEDICAL AND HEALTH SCIENCES
MEDICAL AND HEAL ...
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and Neurosciences
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Acta Neurochirur ...
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Uppsala University
Lund University

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