Pannexin-1 Contributes to the Apoptosis of Spinal Neurocytes in Spinal Cord Injury

Currently, the role of Pannexin-1, a homomeric membrane hemichannel on the neuron cell membrane, in the development of spinal cord injury (SCI) is largely unknown. Herein, we assessed the contribution of Panx1 in the development of SCI. The SCI in vitro model was established using rat primary spinal...

Full description

Bibliographic Details
Main Authors: Yu Huang, Jin Lin, Xuanwei Chen, Jianhua Lin
Format: Article
Language:English
Published: Frontiers Media S.A. 2021-04-01
Series:Frontiers in Physiology
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fphys.2021.656647/full
id doaj-03ae971763064e4d98d2a05ccceeef4c
record_format Article
spelling doaj-03ae971763064e4d98d2a05ccceeef4c2021-04-27T05:34:37ZengFrontiers Media S.A.Frontiers in Physiology1664-042X2021-04-011210.3389/fphys.2021.656647656647Pannexin-1 Contributes to the Apoptosis of Spinal Neurocytes in Spinal Cord InjuryYu Huang0Jin Lin1Xuanwei Chen2Jianhua Lin3Department of Spine Surgery, The First Affiliated Hospital of Fujian Medical University, Fuzhou, ChinaDepartment of Basic Medical Science, Fujian Health College, Fuzhou, ChinaDepartment of Spine Surgery, The First Affiliated Hospital of Fujian Medical University, Fuzhou, ChinaDepartment of Spine Surgery, The First Affiliated Hospital of Fujian Medical University, Fuzhou, ChinaCurrently, the role of Pannexin-1, a homomeric membrane hemichannel on the neuron cell membrane, in the development of spinal cord injury (SCI) is largely unknown. Herein, we assessed the contribution of Panx1 in the development of SCI. The SCI in vitro model was established using rat primary spinal neurocytes treated with hydrogen peroxide (H2O2). Effects of Panx1 overexpression or depletion in spinal neurocytes were analyzed by lentivirus-mediated transfection of Panx1 and interference sh-Panx1. Decreased cell viability was seen in SCI cells, which was further enhanced under Panx1 overexpression and mitigated by Panx1 deficiency. H2O2 induced an increase of intracellular Ca2+ signal and upregulated level of the proapoptotic protein Bax, and apoptosis pathway proteins including cleaved Caspase-3 and PARP1, which was enhanced by Panx1 overexpression or attenuated by Panx1 depletion. On the other hand, H2O2 treatment suppressed the level of antiapoptotic protein Bcl-2, which was further decreased by Panx1 overexpression or mitigated by Panx1 depletion. The results indicate that Panx1 was involved in the intracellular Ca2+ overload of SCI cells by accelerating extracellular Ca2+ influx, which promoted the apoptosis of spinal neurocytes through Ca2+ dependent pathways, thus aggravating the secondary injury of SCI.https://www.frontiersin.org/articles/10.3389/fphys.2021.656647/fullpannexin-1 channelsspinal cord injuryapoptosisCa2+ influxneurocytes
collection DOAJ
language English
format Article
sources DOAJ
author Yu Huang
Jin Lin
Xuanwei Chen
Jianhua Lin
spellingShingle Yu Huang
Jin Lin
Xuanwei Chen
Jianhua Lin
Pannexin-1 Contributes to the Apoptosis of Spinal Neurocytes in Spinal Cord Injury
Frontiers in Physiology
pannexin-1 channels
spinal cord injury
apoptosis
Ca2+ influx
neurocytes
author_facet Yu Huang
Jin Lin
Xuanwei Chen
Jianhua Lin
author_sort Yu Huang
title Pannexin-1 Contributes to the Apoptosis of Spinal Neurocytes in Spinal Cord Injury
title_short Pannexin-1 Contributes to the Apoptosis of Spinal Neurocytes in Spinal Cord Injury
title_full Pannexin-1 Contributes to the Apoptosis of Spinal Neurocytes in Spinal Cord Injury
title_fullStr Pannexin-1 Contributes to the Apoptosis of Spinal Neurocytes in Spinal Cord Injury
title_full_unstemmed Pannexin-1 Contributes to the Apoptosis of Spinal Neurocytes in Spinal Cord Injury
title_sort pannexin-1 contributes to the apoptosis of spinal neurocytes in spinal cord injury
publisher Frontiers Media S.A.
series Frontiers in Physiology
issn 1664-042X
publishDate 2021-04-01
description Currently, the role of Pannexin-1, a homomeric membrane hemichannel on the neuron cell membrane, in the development of spinal cord injury (SCI) is largely unknown. Herein, we assessed the contribution of Panx1 in the development of SCI. The SCI in vitro model was established using rat primary spinal neurocytes treated with hydrogen peroxide (H2O2). Effects of Panx1 overexpression or depletion in spinal neurocytes were analyzed by lentivirus-mediated transfection of Panx1 and interference sh-Panx1. Decreased cell viability was seen in SCI cells, which was further enhanced under Panx1 overexpression and mitigated by Panx1 deficiency. H2O2 induced an increase of intracellular Ca2+ signal and upregulated level of the proapoptotic protein Bax, and apoptosis pathway proteins including cleaved Caspase-3 and PARP1, which was enhanced by Panx1 overexpression or attenuated by Panx1 depletion. On the other hand, H2O2 treatment suppressed the level of antiapoptotic protein Bcl-2, which was further decreased by Panx1 overexpression or mitigated by Panx1 depletion. The results indicate that Panx1 was involved in the intracellular Ca2+ overload of SCI cells by accelerating extracellular Ca2+ influx, which promoted the apoptosis of spinal neurocytes through Ca2+ dependent pathways, thus aggravating the secondary injury of SCI.
topic pannexin-1 channels
spinal cord injury
apoptosis
Ca2+ influx
neurocytes
url https://www.frontiersin.org/articles/10.3389/fphys.2021.656647/full
work_keys_str_mv AT yuhuang pannexin1contributestotheapoptosisofspinalneurocytesinspinalcordinjury
AT jinlin pannexin1contributestotheapoptosisofspinalneurocytesinspinalcordinjury
AT xuanweichen pannexin1contributestotheapoptosisofspinalneurocytesinspinalcordinjury
AT jianhualin pannexin1contributestotheapoptosisofspinalneurocytesinspinalcordinjury
_version_ 1721506189822394368