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A three-dimensional matrix system containing melatonin and neural stem cells repairs damage from traumatic brain injury in rats

Brain lesions can cause neural stem cells to activate, proliferate, differentiate, and migrate to the injured area. However, after traumatic brain injury, brain tissue defects and microenvironment changes greatly affect the survival and growth of neural stem cells; the resulting reduction in the num...

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Autores principales: Fang, Xuan-Yu, Zhao, Da-Wei, Zhang, Chao, Ge, Hong-Fei, Zhang, Xu-Yang, Zhao, Feng-Chun, Jiang, Yi-Bin, Feng, Hua, Hu, Rong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer - Medknow 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9120671/
https://www.ncbi.nlm.nih.gov/pubmed/35535904
http://dx.doi.org/10.4103/1673-5374.339001
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author Fang, Xuan-Yu
Zhao, Da-Wei
Zhang, Chao
Ge, Hong-Fei
Zhang, Xu-Yang
Zhao, Feng-Chun
Jiang, Yi-Bin
Feng, Hua
Hu, Rong
author_facet Fang, Xuan-Yu
Zhao, Da-Wei
Zhang, Chao
Ge, Hong-Fei
Zhang, Xu-Yang
Zhao, Feng-Chun
Jiang, Yi-Bin
Feng, Hua
Hu, Rong
author_sort Fang, Xuan-Yu
collection PubMed
description Brain lesions can cause neural stem cells to activate, proliferate, differentiate, and migrate to the injured area. However, after traumatic brain injury, brain tissue defects and microenvironment changes greatly affect the survival and growth of neural stem cells; the resulting reduction in the number of neural stem cells impedes effective repair of the injured area. Melatonin can promote the survival, proliferation, and differentiation of neural stem cells under adverse conditions such as oxidative stress or hypoxia that can occur after traumatic brain injury. Therefore, we investigated the therapeutic effects of melatonin combined with neural stem cells on traumatic brain injury in rats. First, in vitro studies confirmed that melatonin promoted the survival of neural stem cells deprived of oxygen and glucose. Then, we established a three-dimensional Matrigel-based transplantation system containing melatonin and neural stem cells and then used it to treat traumatic brain injury in rats. We found that treatment with the Matrigel system containing melatonin and neural stem cells decreased brain lesion volume, increased the number of surviving neurons, and improved recovery of neurological function compared with treatment with Matrigel alone, neural stem cells alone, Matrigel and neural stem cells combined, and Matrigel and melatonin combined. Our findings suggest that the three-dimensional Matrigel-based transplantation system containing melatonin and neural stem cells is a potential treatment for traumatic brain injury.
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spelling pubmed-91206712022-05-21 A three-dimensional matrix system containing melatonin and neural stem cells repairs damage from traumatic brain injury in rats Fang, Xuan-Yu Zhao, Da-Wei Zhang, Chao Ge, Hong-Fei Zhang, Xu-Yang Zhao, Feng-Chun Jiang, Yi-Bin Feng, Hua Hu, Rong Neural Regen Res Research Article Brain lesions can cause neural stem cells to activate, proliferate, differentiate, and migrate to the injured area. However, after traumatic brain injury, brain tissue defects and microenvironment changes greatly affect the survival and growth of neural stem cells; the resulting reduction in the number of neural stem cells impedes effective repair of the injured area. Melatonin can promote the survival, proliferation, and differentiation of neural stem cells under adverse conditions such as oxidative stress or hypoxia that can occur after traumatic brain injury. Therefore, we investigated the therapeutic effects of melatonin combined with neural stem cells on traumatic brain injury in rats. First, in vitro studies confirmed that melatonin promoted the survival of neural stem cells deprived of oxygen and glucose. Then, we established a three-dimensional Matrigel-based transplantation system containing melatonin and neural stem cells and then used it to treat traumatic brain injury in rats. We found that treatment with the Matrigel system containing melatonin and neural stem cells decreased brain lesion volume, increased the number of surviving neurons, and improved recovery of neurological function compared with treatment with Matrigel alone, neural stem cells alone, Matrigel and neural stem cells combined, and Matrigel and melatonin combined. Our findings suggest that the three-dimensional Matrigel-based transplantation system containing melatonin and neural stem cells is a potential treatment for traumatic brain injury. Wolters Kluwer - Medknow 2022-04-01 /pmc/articles/PMC9120671/ /pubmed/35535904 http://dx.doi.org/10.4103/1673-5374.339001 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
Fang, Xuan-Yu
Zhao, Da-Wei
Zhang, Chao
Ge, Hong-Fei
Zhang, Xu-Yang
Zhao, Feng-Chun
Jiang, Yi-Bin
Feng, Hua
Hu, Rong
A three-dimensional matrix system containing melatonin and neural stem cells repairs damage from traumatic brain injury in rats
title A three-dimensional matrix system containing melatonin and neural stem cells repairs damage from traumatic brain injury in rats
title_full A three-dimensional matrix system containing melatonin and neural stem cells repairs damage from traumatic brain injury in rats
title_fullStr A three-dimensional matrix system containing melatonin and neural stem cells repairs damage from traumatic brain injury in rats
title_full_unstemmed A three-dimensional matrix system containing melatonin and neural stem cells repairs damage from traumatic brain injury in rats
title_short A three-dimensional matrix system containing melatonin and neural stem cells repairs damage from traumatic brain injury in rats
title_sort three-dimensional matrix system containing melatonin and neural stem cells repairs damage from traumatic brain injury in rats
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9120671/
https://www.ncbi.nlm.nih.gov/pubmed/35535904
http://dx.doi.org/10.4103/1673-5374.339001
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