PPAR Agonists as Therapeutics for CNS Trauma and Neurological Diseases
Traumatic injury or disease of the spinal cord and brain elicits multiple cellular and biochemical reactions that together cause or are associated with neuropathology. Specifically, injury or disease elicits acute infiltration and activation of immune cells, death of neurons and glia, mitochondrial...
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doaj-c5230484558546c09727ee7f6e76ee5a2020-11-25T03:17:51ZengSAGE PublishingASN Neuro1759-09141759-90912013-11-01510.1042/AN2013003010.1042_AN20130030PPAR Agonists as Therapeutics for CNS Trauma and Neurological DiseasesShweta Mandrekar-Colucci0Andrew Sauerbeck1Phillip G. Popovich2Dana M. McTigue3 Center for Brain and Spinal Cord Repair, Department of Neuroscience, Wexner Medical Center at The Ohio State University, Columbus, OH 43210, U.S.A. Center for Brain and Spinal Cord Repair, Department of Neuroscience, Wexner Medical Center at The Ohio State University, Columbus, OH 43210, U.S.A. Center for Brain and Spinal Cord Repair, Department of Neuroscience, Wexner Medical Center at The Ohio State University, Columbus, OH 43210, U.S.A. Center for Brain and Spinal Cord Repair, Department of Neuroscience, Wexner Medical Center at The Ohio State University, Columbus, OH 43210, U.S.A.Traumatic injury or disease of the spinal cord and brain elicits multiple cellular and biochemical reactions that together cause or are associated with neuropathology. Specifically, injury or disease elicits acute infiltration and activation of immune cells, death of neurons and glia, mitochondrial dysfunction, and the secretion of substrates that inhibit axon regeneration. In some diseases, inflammation is chronic or non-resolving. Ligands that target PPARs (peroxisome proliferator-activated receptors), a group of ligand-activated transcription factors, are promising therapeutics for neurologic disease and CNS injury because their activation affects many, if not all, of these interrelated pathologic mechanisms. PPAR activation can simultaneously weaken or reprogram the immune response, stimulate metabolic and mitochondrial function, promote axon growth and induce progenitor cells to differentiate into myelinating oligodendrocytes. PPAR activation has beneficial effects in many pre-clinical models of neurodegenerative diseases and CNS injury; however, the mechanisms through which PPARs exert these effects have yet to be fully elucidated. In this review we discuss current literature supporting the role of PPAR activation as a therapeutic target for treating traumatic injury and degenerative diseases of the CNS.https://doi.org/10.1042/AN20130030 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Shweta Mandrekar-Colucci Andrew Sauerbeck Phillip G. Popovich Dana M. McTigue |
spellingShingle |
Shweta Mandrekar-Colucci Andrew Sauerbeck Phillip G. Popovich Dana M. McTigue PPAR Agonists as Therapeutics for CNS Trauma and Neurological Diseases ASN Neuro |
author_facet |
Shweta Mandrekar-Colucci Andrew Sauerbeck Phillip G. Popovich Dana M. McTigue |
author_sort |
Shweta Mandrekar-Colucci |
title |
PPAR Agonists as Therapeutics for CNS Trauma and Neurological Diseases |
title_short |
PPAR Agonists as Therapeutics for CNS Trauma and Neurological Diseases |
title_full |
PPAR Agonists as Therapeutics for CNS Trauma and Neurological Diseases |
title_fullStr |
PPAR Agonists as Therapeutics for CNS Trauma and Neurological Diseases |
title_full_unstemmed |
PPAR Agonists as Therapeutics for CNS Trauma and Neurological Diseases |
title_sort |
ppar agonists as therapeutics for cns trauma and neurological diseases |
publisher |
SAGE Publishing |
series |
ASN Neuro |
issn |
1759-0914 1759-9091 |
publishDate |
2013-11-01 |
description |
Traumatic injury or disease of the spinal cord and brain elicits multiple cellular and biochemical reactions that together cause or are associated with neuropathology. Specifically, injury or disease elicits acute infiltration and activation of immune cells, death of neurons and glia, mitochondrial dysfunction, and the secretion of substrates that inhibit axon regeneration. In some diseases, inflammation is chronic or non-resolving. Ligands that target PPARs (peroxisome proliferator-activated receptors), a group of ligand-activated transcription factors, are promising therapeutics for neurologic disease and CNS injury because their activation affects many, if not all, of these interrelated pathologic mechanisms. PPAR activation can simultaneously weaken or reprogram the immune response, stimulate metabolic and mitochondrial function, promote axon growth and induce progenitor cells to differentiate into myelinating oligodendrocytes. PPAR activation has beneficial effects in many pre-clinical models of neurodegenerative diseases and CNS injury; however, the mechanisms through which PPARs exert these effects have yet to be fully elucidated. In this review we discuss current literature supporting the role of PPAR activation as a therapeutic target for treating traumatic injury and degenerative diseases of the CNS. |
url |
https://doi.org/10.1042/AN20130030 |
work_keys_str_mv |
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