Cargando…

Role of microtubule dynamics in Wallerian degeneration and nerve regeneration after peripheral nerve injury

Wallerian degeneration, the progressive disintegration of distal axons and myelin that occurs after peripheral nerve injury, is essential for creating a permissive microenvironment for nerve regeneration, and involves cytoskeletal reconstruction. However, it is unclear whether microtubule dynamics p...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Jingmin, Li, Lixia, Zou, Ying, Fu, Lanya, Ma, Xinrui, Zhang, Haowen, Xu, Yizhou, Xu, Jiawei, Zhang, Jiaqi, Li, Mi, Hu, Xiaofang, Li, Zhenlin, Wang, Xianghai, Sun, Hao, Zheng, Hui, Zhu, Lixin, Guo, Jiasong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer - Medknow 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8504388/
https://www.ncbi.nlm.nih.gov/pubmed/34380909
http://dx.doi.org/10.4103/1673-5374.320997
_version_ 1784581312719355904
author Liu, Jingmin
Li, Lixia
Zou, Ying
Fu, Lanya
Ma, Xinrui
Zhang, Haowen
Xu, Yizhou
Xu, Jiawei
Zhang, Jiaqi
Li, Mi
Hu, Xiaofang
Li, Zhenlin
Wang, Xianghai
Sun, Hao
Zheng, Hui
Zhu, Lixin
Guo, Jiasong
author_facet Liu, Jingmin
Li, Lixia
Zou, Ying
Fu, Lanya
Ma, Xinrui
Zhang, Haowen
Xu, Yizhou
Xu, Jiawei
Zhang, Jiaqi
Li, Mi
Hu, Xiaofang
Li, Zhenlin
Wang, Xianghai
Sun, Hao
Zheng, Hui
Zhu, Lixin
Guo, Jiasong
author_sort Liu, Jingmin
collection PubMed
description Wallerian degeneration, the progressive disintegration of distal axons and myelin that occurs after peripheral nerve injury, is essential for creating a permissive microenvironment for nerve regeneration, and involves cytoskeletal reconstruction. However, it is unclear whether microtubule dynamics play a role in this process. To address this, we treated cultured sciatic nerve explants, an in vitro model of Wallerian degeneration, with the microtubule-targeting agents paclitaxel and nocodazole. We found that paclitaxel-induced microtubule stabilization promoted axon and myelin degeneration and Schwann cell dedifferentiation, whereas nocodazole-induced microtubule destabilization inhibited these processes. Evaluation of an in vivo model of peripheral nerve injury showed that treatment with paclitaxel or nocodazole accelerated or attenuated axonal regeneration, as well as functional recovery of nerve conduction and target muscle and motor behavior, respectively. These results suggest that microtubule dynamics participate in peripheral nerve regeneration after injury by affecting Wallerian degeneration. This study was approved by the Animal Care and Use Committee of Southern Medical University, China (approval No. SMU-L2015081) on October 15, 2015.
format Online
Article
Text
id pubmed-8504388
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Wolters Kluwer - Medknow
record_format MEDLINE/PubMed
spelling pubmed-85043882021-11-01 Role of microtubule dynamics in Wallerian degeneration and nerve regeneration after peripheral nerve injury Liu, Jingmin Li, Lixia Zou, Ying Fu, Lanya Ma, Xinrui Zhang, Haowen Xu, Yizhou Xu, Jiawei Zhang, Jiaqi Li, Mi Hu, Xiaofang Li, Zhenlin Wang, Xianghai Sun, Hao Zheng, Hui Zhu, Lixin Guo, Jiasong Neural Regen Res Research Article Wallerian degeneration, the progressive disintegration of distal axons and myelin that occurs after peripheral nerve injury, is essential for creating a permissive microenvironment for nerve regeneration, and involves cytoskeletal reconstruction. However, it is unclear whether microtubule dynamics play a role in this process. To address this, we treated cultured sciatic nerve explants, an in vitro model of Wallerian degeneration, with the microtubule-targeting agents paclitaxel and nocodazole. We found that paclitaxel-induced microtubule stabilization promoted axon and myelin degeneration and Schwann cell dedifferentiation, whereas nocodazole-induced microtubule destabilization inhibited these processes. Evaluation of an in vivo model of peripheral nerve injury showed that treatment with paclitaxel or nocodazole accelerated or attenuated axonal regeneration, as well as functional recovery of nerve conduction and target muscle and motor behavior, respectively. These results suggest that microtubule dynamics participate in peripheral nerve regeneration after injury by affecting Wallerian degeneration. This study was approved by the Animal Care and Use Committee of Southern Medical University, China (approval No. SMU-L2015081) on October 15, 2015. Wolters Kluwer - Medknow 2021-08-04 /pmc/articles/PMC8504388/ /pubmed/34380909 http://dx.doi.org/10.4103/1673-5374.320997 Text en Copyright: © Neural Regeneration Research https://creativecommons.org/licenses/by-nc-sa/4.0/This is an open access journal, and articles are distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as appropriate credit is given and the new creations are licensed under the identical terms.
spellingShingle Research Article
Liu, Jingmin
Li, Lixia
Zou, Ying
Fu, Lanya
Ma, Xinrui
Zhang, Haowen
Xu, Yizhou
Xu, Jiawei
Zhang, Jiaqi
Li, Mi
Hu, Xiaofang
Li, Zhenlin
Wang, Xianghai
Sun, Hao
Zheng, Hui
Zhu, Lixin
Guo, Jiasong
Role of microtubule dynamics in Wallerian degeneration and nerve regeneration after peripheral nerve injury
title Role of microtubule dynamics in Wallerian degeneration and nerve regeneration after peripheral nerve injury
title_full Role of microtubule dynamics in Wallerian degeneration and nerve regeneration after peripheral nerve injury
title_fullStr Role of microtubule dynamics in Wallerian degeneration and nerve regeneration after peripheral nerve injury
title_full_unstemmed Role of microtubule dynamics in Wallerian degeneration and nerve regeneration after peripheral nerve injury
title_short Role of microtubule dynamics in Wallerian degeneration and nerve regeneration after peripheral nerve injury
title_sort role of microtubule dynamics in wallerian degeneration and nerve regeneration after peripheral nerve injury
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8504388/
https://www.ncbi.nlm.nih.gov/pubmed/34380909
http://dx.doi.org/10.4103/1673-5374.320997
work_keys_str_mv AT liujingmin roleofmicrotubuledynamicsinwalleriandegenerationandnerveregenerationafterperipheralnerveinjury
AT lilixia roleofmicrotubuledynamicsinwalleriandegenerationandnerveregenerationafterperipheralnerveinjury
AT zouying roleofmicrotubuledynamicsinwalleriandegenerationandnerveregenerationafterperipheralnerveinjury
AT fulanya roleofmicrotubuledynamicsinwalleriandegenerationandnerveregenerationafterperipheralnerveinjury
AT maxinrui roleofmicrotubuledynamicsinwalleriandegenerationandnerveregenerationafterperipheralnerveinjury
AT zhanghaowen roleofmicrotubuledynamicsinwalleriandegenerationandnerveregenerationafterperipheralnerveinjury
AT xuyizhou roleofmicrotubuledynamicsinwalleriandegenerationandnerveregenerationafterperipheralnerveinjury
AT xujiawei roleofmicrotubuledynamicsinwalleriandegenerationandnerveregenerationafterperipheralnerveinjury
AT zhangjiaqi roleofmicrotubuledynamicsinwalleriandegenerationandnerveregenerationafterperipheralnerveinjury
AT limi roleofmicrotubuledynamicsinwalleriandegenerationandnerveregenerationafterperipheralnerveinjury
AT huxiaofang roleofmicrotubuledynamicsinwalleriandegenerationandnerveregenerationafterperipheralnerveinjury
AT lizhenlin roleofmicrotubuledynamicsinwalleriandegenerationandnerveregenerationafterperipheralnerveinjury
AT wangxianghai roleofmicrotubuledynamicsinwalleriandegenerationandnerveregenerationafterperipheralnerveinjury
AT sunhao roleofmicrotubuledynamicsinwalleriandegenerationandnerveregenerationafterperipheralnerveinjury
AT zhenghui roleofmicrotubuledynamicsinwalleriandegenerationandnerveregenerationafterperipheralnerveinjury
AT zhulixin roleofmicrotubuledynamicsinwalleriandegenerationandnerveregenerationafterperipheralnerveinjury
AT guojiasong roleofmicrotubuledynamicsinwalleriandegenerationandnerveregenerationafterperipheralnerveinjury