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Substance P as a mediator of neurogenic inflammation after balloon compression induced spinal cord injury. | Forum

Admin
Admin Sep 2 '18

This demonstrates that nerve insult causes inflammation.


J Neurotrauma. 2013 Nov 1;30(21):1812-23. doi: 10.1089/neu.2013.2993. Epub 2013 Sep 28.Substance P as a mediator of neurogenic inflammation after balloon compression induced spinal cord injury.
Leonard AV1, Thornton E, Vink R.Author informationAbstract

Although clinical spinal cord injury (SCI) occurs within a closed environment, most experimental models of SCI create an open injury. Such an open environment precludes the measurement of intrathecal pressure (ITP), whose increase after SCI has been linked to the development of greater tissue damage and functional deficits. Raised ITP may be potentiated by edema, which we have recently shown to be associated with substance P (SP) induced neurogenic inflammation in both traumatic brain injury and stroke. The present study investigates whether SP plays a similar role as a mediator of neurogenic inflammation after SCI. A closed balloon compression injury was induced at T10 in New Zealand white rabbits. Animals were thereafter assessed for blood spinal cord barrier (BSCB) permeability, edema, ITP, histological outcome, and functional outcome from 5 h to 2 weeks post-SCI. The balloon compression model produced significant increases in BSCB permeability, edema, and ITP along with significant functional deficits that persisted for 2 weeks. Histological assessment demonstrated decreased SP immunoreactivity in the injured spinal cord while NK1 receptor immunoreactivity initially increased before returning to sham levels. In addition, aquaporin 4 immunoreactivity increased early post-SCI, implicating this water channel in the development of edema after SCI. The changes described in the present study support a role for SP as a mediator of neurogenic inflammation after SCI.

PMID:23924052DOI:10.1089/neu.2013.2993[Indexed for MEDLINE]


https://www.ncbi.nlm.nih.gov/pubmed/23924052


Admin
Admin Sep 2 '18

Related article: 

Neurogenic inflammation and the peripheral nervous system in host defense and immunopathology.https://www.ncbi.nlm.nih.gov/pubmed/22837035

abstract:The peripheral nervous and immune systems are traditionally thought of as serving separate functions. The line between them is, however, becoming increasingly blurred by new insights into neurogenic inflammation. Nociceptor neurons possess many of the same molecular recognition pathways for danger as immune cells, and, in response to danger, the peripheral nervous system directly communicates with the immune system, forming an integrated protective mechanism. The dense innervation network of sensory and autonomic fibers in peripheral tissues and high speed of neural transduction allows rapid local and systemic neurogenic modulation of immunity. Peripheral neurons also seem to contribute to immune dysfunction in autoimmune and allergic diseases. Therefore, understanding the coordinated interaction of peripheral neurons with immune cells may advance therapeutic approaches to increase host defense and suppress immunopathology.

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