Cargando…

Hevin/Sparcl1 drives pathological pain through spinal cord astrocyte and NMDA receptor signaling

High endothelial venule protein/SPARC-like 1 (hevin/Sparcl1) is an astrocyte-secreted protein that regulates synapse formation in the brain. Here we show that astrocytic hevin signaling plays a critical role in maintaining chronic pain. Compared with WT mice, hevin-null mice exhibited normal mechani...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Gang, Xu, Jing, Luo, Hao, Luo, Xin, Singh, Sandeep K., Ramirez, Juan J., James, Michael L., Mathew, Joseph P., Berger, Miles, Eroglu, Cagla, Ji, Ru-Rong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9746899/
https://www.ncbi.nlm.nih.gov/pubmed/36256481
http://dx.doi.org/10.1172/jci.insight.161028
_version_ 1784849466340147200
author Chen, Gang
Xu, Jing
Luo, Hao
Luo, Xin
Singh, Sandeep K.
Ramirez, Juan J.
James, Michael L.
Mathew, Joseph P.
Berger, Miles
Eroglu, Cagla
Ji, Ru-Rong
author_facet Chen, Gang
Xu, Jing
Luo, Hao
Luo, Xin
Singh, Sandeep K.
Ramirez, Juan J.
James, Michael L.
Mathew, Joseph P.
Berger, Miles
Eroglu, Cagla
Ji, Ru-Rong
author_sort Chen, Gang
collection PubMed
description High endothelial venule protein/SPARC-like 1 (hevin/Sparcl1) is an astrocyte-secreted protein that regulates synapse formation in the brain. Here we show that astrocytic hevin signaling plays a critical role in maintaining chronic pain. Compared with WT mice, hevin-null mice exhibited normal mechanical and heat sensitivity but reduced inflammatory pain. Interestingly, hevin-null mice have faster recovery than WT mice from neuropathic pain after nerve injury. Intrathecal injection of WT hevin was sufficient to induce persistent mechanical allodynia in naive mice. In hevin-null mice with nerve injury, adeno-associated-virus–mediated (AAV-mediated) re-expression of hevin in glial fibrillary acidic protein–expressing (GFAP-expressing) spinal cord astrocytes could reinstate neuropathic pain. Mechanistically, hevin is crucial for spinal cord NMDA receptor (NMDAR) signaling. Hevin-potentiated N-Methyl-D-aspartic acid (NMDA) currents are mediated by GluN2B-containing NMDARs. Furthermore, intrathecal injection of a neutralizing Ab against hevin alleviated acute and persistent inflammatory pain, postoperative pain, and neuropathic pain. Secreted hevin that was detected in mouse cerebrospinal fluid (CSF) and nerve injury significantly increased CSF hevin abundance. Finally, neurosurgery caused rapid and substantial increases in SPARCL1/HEVIN levels in human CSF. Collectively, our findings support a critical role of hevin and astrocytes in the maintenance of chronic pain. Neutralizing of secreted hevin with monoclonal Ab may provide a new therapeutic strategy for treating acute and chronic pain and NMDAR-medicated neurodegeneration.
format Online
Article
Text
id pubmed-9746899
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher American Society for Clinical Investigation
record_format MEDLINE/PubMed
spelling pubmed-97468992022-12-20 Hevin/Sparcl1 drives pathological pain through spinal cord astrocyte and NMDA receptor signaling Chen, Gang Xu, Jing Luo, Hao Luo, Xin Singh, Sandeep K. Ramirez, Juan J. James, Michael L. Mathew, Joseph P. Berger, Miles Eroglu, Cagla Ji, Ru-Rong JCI Insight Research Article High endothelial venule protein/SPARC-like 1 (hevin/Sparcl1) is an astrocyte-secreted protein that regulates synapse formation in the brain. Here we show that astrocytic hevin signaling plays a critical role in maintaining chronic pain. Compared with WT mice, hevin-null mice exhibited normal mechanical and heat sensitivity but reduced inflammatory pain. Interestingly, hevin-null mice have faster recovery than WT mice from neuropathic pain after nerve injury. Intrathecal injection of WT hevin was sufficient to induce persistent mechanical allodynia in naive mice. In hevin-null mice with nerve injury, adeno-associated-virus–mediated (AAV-mediated) re-expression of hevin in glial fibrillary acidic protein–expressing (GFAP-expressing) spinal cord astrocytes could reinstate neuropathic pain. Mechanistically, hevin is crucial for spinal cord NMDA receptor (NMDAR) signaling. Hevin-potentiated N-Methyl-D-aspartic acid (NMDA) currents are mediated by GluN2B-containing NMDARs. Furthermore, intrathecal injection of a neutralizing Ab against hevin alleviated acute and persistent inflammatory pain, postoperative pain, and neuropathic pain. Secreted hevin that was detected in mouse cerebrospinal fluid (CSF) and nerve injury significantly increased CSF hevin abundance. Finally, neurosurgery caused rapid and substantial increases in SPARCL1/HEVIN levels in human CSF. Collectively, our findings support a critical role of hevin and astrocytes in the maintenance of chronic pain. Neutralizing of secreted hevin with monoclonal Ab may provide a new therapeutic strategy for treating acute and chronic pain and NMDAR-medicated neurodegeneration. American Society for Clinical Investigation 2022-12-08 /pmc/articles/PMC9746899/ /pubmed/36256481 http://dx.doi.org/10.1172/jci.insight.161028 Text en © 2022 Chen et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Chen, Gang
Xu, Jing
Luo, Hao
Luo, Xin
Singh, Sandeep K.
Ramirez, Juan J.
James, Michael L.
Mathew, Joseph P.
Berger, Miles
Eroglu, Cagla
Ji, Ru-Rong
Hevin/Sparcl1 drives pathological pain through spinal cord astrocyte and NMDA receptor signaling
title Hevin/Sparcl1 drives pathological pain through spinal cord astrocyte and NMDA receptor signaling
title_full Hevin/Sparcl1 drives pathological pain through spinal cord astrocyte and NMDA receptor signaling
title_fullStr Hevin/Sparcl1 drives pathological pain through spinal cord astrocyte and NMDA receptor signaling
title_full_unstemmed Hevin/Sparcl1 drives pathological pain through spinal cord astrocyte and NMDA receptor signaling
title_short Hevin/Sparcl1 drives pathological pain through spinal cord astrocyte and NMDA receptor signaling
title_sort hevin/sparcl1 drives pathological pain through spinal cord astrocyte and nmda receptor signaling
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9746899/
https://www.ncbi.nlm.nih.gov/pubmed/36256481
http://dx.doi.org/10.1172/jci.insight.161028
work_keys_str_mv AT chengang hevinsparcl1drivespathologicalpainthroughspinalcordastrocyteandnmdareceptorsignaling
AT xujing hevinsparcl1drivespathologicalpainthroughspinalcordastrocyteandnmdareceptorsignaling
AT luohao hevinsparcl1drivespathologicalpainthroughspinalcordastrocyteandnmdareceptorsignaling
AT luoxin hevinsparcl1drivespathologicalpainthroughspinalcordastrocyteandnmdareceptorsignaling
AT singhsandeepk hevinsparcl1drivespathologicalpainthroughspinalcordastrocyteandnmdareceptorsignaling
AT ramirezjuanj hevinsparcl1drivespathologicalpainthroughspinalcordastrocyteandnmdareceptorsignaling
AT jamesmichaell hevinsparcl1drivespathologicalpainthroughspinalcordastrocyteandnmdareceptorsignaling
AT mathewjosephp hevinsparcl1drivespathologicalpainthroughspinalcordastrocyteandnmdareceptorsignaling
AT bergermiles hevinsparcl1drivespathologicalpainthroughspinalcordastrocyteandnmdareceptorsignaling
AT eroglucagla hevinsparcl1drivespathologicalpainthroughspinalcordastrocyteandnmdareceptorsignaling
AT jirurong hevinsparcl1drivespathologicalpainthroughspinalcordastrocyteandnmdareceptorsignaling