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The effects of the M2a macrophage-induced axonal regeneration of neurons by arginase 1

Background: Spinal cord injury (SCI) is a challenge worldwide, but there are no effective treatments or therapeutic methods in the clinic. Recent studies have shown that type I arginase (Arginase1, Arg1) is closely associated with the treatment of SCI. The classical treatment for SCI involves fillin...

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Autores principales: Zhang, Jieyuan, Li, Yue, Duan, Zhaoxia, Kang, Jianyi, Chen, Kuijun, Li, Guanhua, Weng, Changmei, Zhang, Dongdong, Zhang, Lu, Wang, Jianmin, Li, Bingcang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7012653/
https://www.ncbi.nlm.nih.gov/pubmed/31994698
http://dx.doi.org/10.1042/BSR20193031
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author Zhang, Jieyuan
Li, Yue
Duan, Zhaoxia
Kang, Jianyi
Chen, Kuijun
Li, Guanhua
Weng, Changmei
Zhang, Dongdong
Zhang, Lu
Wang, Jianmin
Li, Bingcang
author_facet Zhang, Jieyuan
Li, Yue
Duan, Zhaoxia
Kang, Jianyi
Chen, Kuijun
Li, Guanhua
Weng, Changmei
Zhang, Dongdong
Zhang, Lu
Wang, Jianmin
Li, Bingcang
author_sort Zhang, Jieyuan
collection PubMed
description Background: Spinal cord injury (SCI) is a challenge worldwide, but there are no effective treatments or therapeutic methods in the clinic. Recent studies have shown that type I arginase (Arginase1, Arg1) is closely associated with the treatment of SCI. The classical treatment for SCI involves filling the local area of SCI with activated M2a macrophages to allow the repair and regeneration of some synapses, but the specific mechanism of action of Arg1 is not clear. Method: In the present study, we first induced the polarization of RAW264.7 macrophages to M2a-type cells using IL-4 and constructed an Arg1 knockout cell line through the use of shRNA; we used these cells to treat a rat model of SCI. Finally, the present study explored the mechanism and pathway by which Arginase 1 regulates spinal repair by immunoblotting and immunohistochemistry. Result: Suspended M2a (Arg1-/+) macrophages were transplanted into the injury site in a rat model of contusion SCI. Compared with the model group and the shArg1 group, the shScramble (shSc) group exhibited higher Basso, Beattie, Bresnahan motor function scores, more compact structures and more Nissl bodies. Immunohistochemical results showed that the shSc group expressed higher levels of NeuN (a neuronal marker) and tau (an axonal marker), as well as the up-regulation of Cdc42, N-WASP, Arp2/3 and tau, as determined by Western blot. Conclusion: The study found that the polarization of M2a macrophages promoted the expression of Arginase 1, which restored axonal regeneration, promoted axonal regeneration, and promoted the structural and functional recovery of the contused spinal cord.
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spelling pubmed-70126532020-02-21 The effects of the M2a macrophage-induced axonal regeneration of neurons by arginase 1 Zhang, Jieyuan Li, Yue Duan, Zhaoxia Kang, Jianyi Chen, Kuijun Li, Guanhua Weng, Changmei Zhang, Dongdong Zhang, Lu Wang, Jianmin Li, Bingcang Biosci Rep Cell Cycle, Growth & Proliferation Background: Spinal cord injury (SCI) is a challenge worldwide, but there are no effective treatments or therapeutic methods in the clinic. Recent studies have shown that type I arginase (Arginase1, Arg1) is closely associated with the treatment of SCI. The classical treatment for SCI involves filling the local area of SCI with activated M2a macrophages to allow the repair and regeneration of some synapses, but the specific mechanism of action of Arg1 is not clear. Method: In the present study, we first induced the polarization of RAW264.7 macrophages to M2a-type cells using IL-4 and constructed an Arg1 knockout cell line through the use of shRNA; we used these cells to treat a rat model of SCI. Finally, the present study explored the mechanism and pathway by which Arginase 1 regulates spinal repair by immunoblotting and immunohistochemistry. Result: Suspended M2a (Arg1-/+) macrophages were transplanted into the injury site in a rat model of contusion SCI. Compared with the model group and the shArg1 group, the shScramble (shSc) group exhibited higher Basso, Beattie, Bresnahan motor function scores, more compact structures and more Nissl bodies. Immunohistochemical results showed that the shSc group expressed higher levels of NeuN (a neuronal marker) and tau (an axonal marker), as well as the up-regulation of Cdc42, N-WASP, Arp2/3 and tau, as determined by Western blot. Conclusion: The study found that the polarization of M2a macrophages promoted the expression of Arginase 1, which restored axonal regeneration, promoted axonal regeneration, and promoted the structural and functional recovery of the contused spinal cord. Portland Press Ltd. 2020-02-11 /pmc/articles/PMC7012653/ /pubmed/31994698 http://dx.doi.org/10.1042/BSR20193031 Text en © 2020 The Author(s). https://creativecommons.org/licenses/by/4.0/ This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0 (CC BY).
spellingShingle Cell Cycle, Growth & Proliferation
Zhang, Jieyuan
Li, Yue
Duan, Zhaoxia
Kang, Jianyi
Chen, Kuijun
Li, Guanhua
Weng, Changmei
Zhang, Dongdong
Zhang, Lu
Wang, Jianmin
Li, Bingcang
The effects of the M2a macrophage-induced axonal regeneration of neurons by arginase 1
title The effects of the M2a macrophage-induced axonal regeneration of neurons by arginase 1
title_full The effects of the M2a macrophage-induced axonal regeneration of neurons by arginase 1
title_fullStr The effects of the M2a macrophage-induced axonal regeneration of neurons by arginase 1
title_full_unstemmed The effects of the M2a macrophage-induced axonal regeneration of neurons by arginase 1
title_short The effects of the M2a macrophage-induced axonal regeneration of neurons by arginase 1
title_sort effects of the m2a macrophage-induced axonal regeneration of neurons by arginase 1
topic Cell Cycle, Growth & Proliferation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7012653/
https://www.ncbi.nlm.nih.gov/pubmed/31994698
http://dx.doi.org/10.1042/BSR20193031
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