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Protective effects of autophagy and NFE2L2 on reactive oxygen species-induced pyroptosis of human nucleus pulposus cells

Intervertebral disc degeneration (IDD) is characterized by the decrease of nucleus pulposus cells (NPCs). With the increase of the degree of degeneration, the reactive oxygen species (ROS) in nucleus pulposus tissue increases. Pyroptosis is a newly discovered form of cell death and its relationship...

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Autores principales: Bai, Zhibiao, Liu, Wei, He, Danshuang, Wang, Yiyang, Yi, Weiwei, Luo, Changqi, Shen, Jieliang, Hu, Zhenming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7202523/
https://www.ncbi.nlm.nih.gov/pubmed/32320383
http://dx.doi.org/10.18632/aging.103109
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author Bai, Zhibiao
Liu, Wei
He, Danshuang
Wang, Yiyang
Yi, Weiwei
Luo, Changqi
Shen, Jieliang
Hu, Zhenming
author_facet Bai, Zhibiao
Liu, Wei
He, Danshuang
Wang, Yiyang
Yi, Weiwei
Luo, Changqi
Shen, Jieliang
Hu, Zhenming
author_sort Bai, Zhibiao
collection PubMed
description Intervertebral disc degeneration (IDD) is characterized by the decrease of nucleus pulposus cells (NPCs). With the increase of the degree of degeneration, the reactive oxygen species (ROS) in nucleus pulposus tissue increases. Pyroptosis is a newly discovered form of cell death and its relationship with oxidative stress in NPCs remains unclear. This study was performed to investigate the mechanisms of pyroptosis of NPCs under oxidative stress. NPCs were isolated from IDD patients by surgical treatment. Pyroptosis related proteins like NLR family pyrin domain containing 3(NLRP3) and PYD and CARD domain containing (PYCARD) were detected by western blot, and membrane pore formation was observed by hochest33342/PI double staining or scanning electron microscope. The results showed that ROS induced the pyroptosis of NPCs and it depended on the expression of NLRP3 and PYCARD. The increased ROS level also increased transcription factor nuclear factor, erythroid 2 like 2 (NFE2L2, Nrf2) and the autophagy of NPCs, both of which attenuated the pyroptosis. In summary, ROS induces the pyroptosis of NPCs through the NLRP3/ PYCARD pathway, and establishes negative regulation by increasing autophagy and NFE2L2. These findings may provide a better understanding of the mechanism of IDD and potential therapeutic approaches for IDD treatment.
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spelling pubmed-72025232020-05-11 Protective effects of autophagy and NFE2L2 on reactive oxygen species-induced pyroptosis of human nucleus pulposus cells Bai, Zhibiao Liu, Wei He, Danshuang Wang, Yiyang Yi, Weiwei Luo, Changqi Shen, Jieliang Hu, Zhenming Aging (Albany NY) Research Paper Intervertebral disc degeneration (IDD) is characterized by the decrease of nucleus pulposus cells (NPCs). With the increase of the degree of degeneration, the reactive oxygen species (ROS) in nucleus pulposus tissue increases. Pyroptosis is a newly discovered form of cell death and its relationship with oxidative stress in NPCs remains unclear. This study was performed to investigate the mechanisms of pyroptosis of NPCs under oxidative stress. NPCs were isolated from IDD patients by surgical treatment. Pyroptosis related proteins like NLR family pyrin domain containing 3(NLRP3) and PYD and CARD domain containing (PYCARD) were detected by western blot, and membrane pore formation was observed by hochest33342/PI double staining or scanning electron microscope. The results showed that ROS induced the pyroptosis of NPCs and it depended on the expression of NLRP3 and PYCARD. The increased ROS level also increased transcription factor nuclear factor, erythroid 2 like 2 (NFE2L2, Nrf2) and the autophagy of NPCs, both of which attenuated the pyroptosis. In summary, ROS induces the pyroptosis of NPCs through the NLRP3/ PYCARD pathway, and establishes negative regulation by increasing autophagy and NFE2L2. These findings may provide a better understanding of the mechanism of IDD and potential therapeutic approaches for IDD treatment. Impact Journals 2020-04-22 /pmc/articles/PMC7202523/ /pubmed/32320383 http://dx.doi.org/10.18632/aging.103109 Text en Copyright © 2020 Bai et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Bai, Zhibiao
Liu, Wei
He, Danshuang
Wang, Yiyang
Yi, Weiwei
Luo, Changqi
Shen, Jieliang
Hu, Zhenming
Protective effects of autophagy and NFE2L2 on reactive oxygen species-induced pyroptosis of human nucleus pulposus cells
title Protective effects of autophagy and NFE2L2 on reactive oxygen species-induced pyroptosis of human nucleus pulposus cells
title_full Protective effects of autophagy and NFE2L2 on reactive oxygen species-induced pyroptosis of human nucleus pulposus cells
title_fullStr Protective effects of autophagy and NFE2L2 on reactive oxygen species-induced pyroptosis of human nucleus pulposus cells
title_full_unstemmed Protective effects of autophagy and NFE2L2 on reactive oxygen species-induced pyroptosis of human nucleus pulposus cells
title_short Protective effects of autophagy and NFE2L2 on reactive oxygen species-induced pyroptosis of human nucleus pulposus cells
title_sort protective effects of autophagy and nfe2l2 on reactive oxygen species-induced pyroptosis of human nucleus pulposus cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7202523/
https://www.ncbi.nlm.nih.gov/pubmed/32320383
http://dx.doi.org/10.18632/aging.103109
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