Cargando…
Pathogenesis of spinal cord injury induced edema and neuropathic pain: expression of multiple isoforms of wnk1
BACKGROUND: Neuropathic pain (NP) is a common occurrence following spinal cord injury (SCI). Identification of specific molecular pathways that are involved in pain syndromes has become a major priority in current SCI research. We have investigated the role of a cation-dependent chloride transporter...
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Indian Academy of Neurosciences
2014
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4158783/ https://www.ncbi.nlm.nih.gov/pubmed/25206073 http://dx.doi.org/10.5214/ans.0972.7531.210305 |
_version_ | 1782334116639801344 |
---|---|
author | Ahmed, Mostafa M. Lee, HyunKyung Clark, Zach Miranpuri, Gurwattan S. Nacht, Carrie Patel, Kush Liu, Lisa Joslin, Jiliian Kintner, Douglus Resnick, Daniel K. |
author_facet | Ahmed, Mostafa M. Lee, HyunKyung Clark, Zach Miranpuri, Gurwattan S. Nacht, Carrie Patel, Kush Liu, Lisa Joslin, Jiliian Kintner, Douglus Resnick, Daniel K. |
author_sort | Ahmed, Mostafa M. |
collection | PubMed |
description | BACKGROUND: Neuropathic pain (NP) is a common occurrence following spinal cord injury (SCI). Identification of specific molecular pathways that are involved in pain syndromes has become a major priority in current SCI research. We have investigated the role of a cation-dependent chloride transporter, Cl-regulatory protein Na(+)-K(+)-Cl(-) 1 (NKCC1), phosphorylation profile of NKCC1 and its specific involvement in neuropathic pain following contusion SCI (cSCI) using a rat model. Administration of the NKCC1 inhibitor bumetanide (BU) increases the mean hindpaw withdrawal latency time (WLT), thermal hyperalgesia (TH) following cSCI. These results demonstrate implication of NKCC1 co-transporter and BUin SCI-induced neuropathic pain. The with-no-lysine (K)–1 (WNK1) kinase has been shown to be an important regulator of NKCC1 phosphorylation in many systems, including nocioception. Mutations in a neuronal-specific exon of WNK1 (HSN2) was identified in patients that have hereditary sensory neuropathy type II (HSANII) also implicates WNK1 in nocioception, such that these patients have loss of perception to pain, touch and heat. In our ongoing research we proposed two studies utilizing our contusion SCI (cSCI) NP model of rat. PURPOSE: Study 1 aimed at NKCC1 expression and activity is up-regulated following cSCI in the early edema and chronic neuropathic pain phases. Study 2 aimed at identifying the expression profile of alternatively spliced WNK1 isoforms in animals exhibiting thermal hyperalgesia (TH) following cSCI. METHODS: Adult male Sprague Dawley rats (275–300 g) following laminectomy received cSCI at T9 with the NYU impactor-device II by dropping 10 g weight from the height of 12.5 mm. Control rats obtained laminectomy but no impaction. Following injury, functional recovery was assessed by BBB locomotor scores on day 1, 7, 14, 21, 35, and 42 and development of thermal hyperalgesia on day 21, 28, 35, and 42 day of injury by monitoring hind paw withdraw latency time (WLT) in seconds compared with the baseline data before injury. RESULTS: Increased NKCC1 may explain observed increase in magnetic resonance imaging (MRI) T2, exhibiting NKCC1 localization in neurons. This data supports NKCC1’s role in the pathogenesis of acute and chronic phases of injury, namely spinal cord edema and chronic phase neuropathic pain. NKCC1 dependent chloride influx requires the phosphorylation at specific residues. Probing for the HSN2 exon of WNK1 reveals two key findings: i) the HSN2 exon is found in alternatively spliced neuronal isoforms found at 250 kDa and 230 kDa; ii) the 250 kDa isoform is found only in tissue that is injured. CONCLUSIONS: This data implicates the NKCC1/WNK1/WNK1HSN2 involvement in post-injury response that contributes to the development of neuropathic pain. Targeting this system may have therapeutic benefit. |
format | Online Article Text |
id | pubmed-4158783 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | Indian Academy of Neurosciences |
record_format | MEDLINE/PubMed |
spelling | pubmed-41587832014-09-09 Pathogenesis of spinal cord injury induced edema and neuropathic pain: expression of multiple isoforms of wnk1 Ahmed, Mostafa M. Lee, HyunKyung Clark, Zach Miranpuri, Gurwattan S. Nacht, Carrie Patel, Kush Liu, Lisa Joslin, Jiliian Kintner, Douglus Resnick, Daniel K. Ann Neurosci Research Article BACKGROUND: Neuropathic pain (NP) is a common occurrence following spinal cord injury (SCI). Identification of specific molecular pathways that are involved in pain syndromes has become a major priority in current SCI research. We have investigated the role of a cation-dependent chloride transporter, Cl-regulatory protein Na(+)-K(+)-Cl(-) 1 (NKCC1), phosphorylation profile of NKCC1 and its specific involvement in neuropathic pain following contusion SCI (cSCI) using a rat model. Administration of the NKCC1 inhibitor bumetanide (BU) increases the mean hindpaw withdrawal latency time (WLT), thermal hyperalgesia (TH) following cSCI. These results demonstrate implication of NKCC1 co-transporter and BUin SCI-induced neuropathic pain. The with-no-lysine (K)–1 (WNK1) kinase has been shown to be an important regulator of NKCC1 phosphorylation in many systems, including nocioception. Mutations in a neuronal-specific exon of WNK1 (HSN2) was identified in patients that have hereditary sensory neuropathy type II (HSANII) also implicates WNK1 in nocioception, such that these patients have loss of perception to pain, touch and heat. In our ongoing research we proposed two studies utilizing our contusion SCI (cSCI) NP model of rat. PURPOSE: Study 1 aimed at NKCC1 expression and activity is up-regulated following cSCI in the early edema and chronic neuropathic pain phases. Study 2 aimed at identifying the expression profile of alternatively spliced WNK1 isoforms in animals exhibiting thermal hyperalgesia (TH) following cSCI. METHODS: Adult male Sprague Dawley rats (275–300 g) following laminectomy received cSCI at T9 with the NYU impactor-device II by dropping 10 g weight from the height of 12.5 mm. Control rats obtained laminectomy but no impaction. Following injury, functional recovery was assessed by BBB locomotor scores on day 1, 7, 14, 21, 35, and 42 and development of thermal hyperalgesia on day 21, 28, 35, and 42 day of injury by monitoring hind paw withdraw latency time (WLT) in seconds compared with the baseline data before injury. RESULTS: Increased NKCC1 may explain observed increase in magnetic resonance imaging (MRI) T2, exhibiting NKCC1 localization in neurons. This data supports NKCC1’s role in the pathogenesis of acute and chronic phases of injury, namely spinal cord edema and chronic phase neuropathic pain. NKCC1 dependent chloride influx requires the phosphorylation at specific residues. Probing for the HSN2 exon of WNK1 reveals two key findings: i) the HSN2 exon is found in alternatively spliced neuronal isoforms found at 250 kDa and 230 kDa; ii) the 250 kDa isoform is found only in tissue that is injured. CONCLUSIONS: This data implicates the NKCC1/WNK1/WNK1HSN2 involvement in post-injury response that contributes to the development of neuropathic pain. Targeting this system may have therapeutic benefit. Indian Academy of Neurosciences 2014-07 /pmc/articles/PMC4158783/ /pubmed/25206073 http://dx.doi.org/10.5214/ans.0972.7531.210305 Text en Copyright © 2014, The National Academy of Sciences http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Article Ahmed, Mostafa M. Lee, HyunKyung Clark, Zach Miranpuri, Gurwattan S. Nacht, Carrie Patel, Kush Liu, Lisa Joslin, Jiliian Kintner, Douglus Resnick, Daniel K. Pathogenesis of spinal cord injury induced edema and neuropathic pain: expression of multiple isoforms of wnk1 |
title | Pathogenesis of spinal cord injury induced edema and neuropathic pain: expression of multiple isoforms of wnk1 |
title_full | Pathogenesis of spinal cord injury induced edema and neuropathic pain: expression of multiple isoforms of wnk1 |
title_fullStr | Pathogenesis of spinal cord injury induced edema and neuropathic pain: expression of multiple isoforms of wnk1 |
title_full_unstemmed | Pathogenesis of spinal cord injury induced edema and neuropathic pain: expression of multiple isoforms of wnk1 |
title_short | Pathogenesis of spinal cord injury induced edema and neuropathic pain: expression of multiple isoforms of wnk1 |
title_sort | pathogenesis of spinal cord injury induced edema and neuropathic pain: expression of multiple isoforms of wnk1 |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4158783/ https://www.ncbi.nlm.nih.gov/pubmed/25206073 http://dx.doi.org/10.5214/ans.0972.7531.210305 |
work_keys_str_mv | AT ahmedmostafam pathogenesisofspinalcordinjuryinducededemaandneuropathicpainexpressionofmultipleisoformsofwnk1 AT leehyunkyung pathogenesisofspinalcordinjuryinducededemaandneuropathicpainexpressionofmultipleisoformsofwnk1 AT clarkzach pathogenesisofspinalcordinjuryinducededemaandneuropathicpainexpressionofmultipleisoformsofwnk1 AT miranpurigurwattans pathogenesisofspinalcordinjuryinducededemaandneuropathicpainexpressionofmultipleisoformsofwnk1 AT nachtcarrie pathogenesisofspinalcordinjuryinducededemaandneuropathicpainexpressionofmultipleisoformsofwnk1 AT patelkush pathogenesisofspinalcordinjuryinducededemaandneuropathicpainexpressionofmultipleisoformsofwnk1 AT liulisa pathogenesisofspinalcordinjuryinducededemaandneuropathicpainexpressionofmultipleisoformsofwnk1 AT joslinjiliian pathogenesisofspinalcordinjuryinducededemaandneuropathicpainexpressionofmultipleisoformsofwnk1 AT kintnerdouglus pathogenesisofspinalcordinjuryinducededemaandneuropathicpainexpressionofmultipleisoformsofwnk1 AT resnickdanielk pathogenesisofspinalcordinjuryinducededemaandneuropathicpainexpressionofmultipleisoformsofwnk1 |