Cargando…

Dorsal Root Ganglion Maintains Stemness of Bone Marrow Mesenchymal Stem Cells by Enhancing Autophagy through the AMPK/mTOR Pathway in a Coculture System

Our previous studies found that sensory nerve tracts implanted in tissue-engineered bone (TEB) could result in better osteogenesis. To explore the mechanism of the sensory nerve promoting osteogenesis in TEB in vitro, a transwell coculture experiment was designed between dorsal root ganglion (DRG) c...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Shuaishuai, Li, Junqin, Jiang, Huijie, Gao, Yi, Cheng, Pengzhen, Cao, Tianqing, Li, Donglin, Wang, Jimeng, Song, Yue, Liu, Bin, Wu, Hao, Wang, Chunmei, Yang, Liu, Pei, Guoxian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6186314/
https://www.ncbi.nlm.nih.gov/pubmed/30363977
http://dx.doi.org/10.1155/2018/8478953
_version_ 1783362838418423808
author Zhang, Shuaishuai
Li, Junqin
Jiang, Huijie
Gao, Yi
Cheng, Pengzhen
Cao, Tianqing
Li, Donglin
Wang, Jimeng
Song, Yue
Liu, Bin
Wu, Hao
Wang, Chunmei
Yang, Liu
Pei, Guoxian
author_facet Zhang, Shuaishuai
Li, Junqin
Jiang, Huijie
Gao, Yi
Cheng, Pengzhen
Cao, Tianqing
Li, Donglin
Wang, Jimeng
Song, Yue
Liu, Bin
Wu, Hao
Wang, Chunmei
Yang, Liu
Pei, Guoxian
author_sort Zhang, Shuaishuai
collection PubMed
description Our previous studies found that sensory nerve tracts implanted in tissue-engineered bone (TEB) could result in better osteogenesis. To explore the mechanism of the sensory nerve promoting osteogenesis in TEB in vitro, a transwell coculture experiment was designed between dorsal root ganglion (DRG) cells and bone marrow mesenchymal stem cells (BMSCs). BMSC proliferation was determined by CCK8 assay, and osteo-, chondro-, and adipogenic differentiation were assessed by alizarin red, alcian blue, and oil red staining. We found that the proliferation and multipotent differentiation of BMSCs were all enhanced in the coculture group compared to the BMSCs group. Crystal violet staining showed that the clone-forming ability of BMSCs in the coculture group was also enhanced and mRNA levels of Sox2, Nanog, and Oct4 were significantly upregulated in the coculture group. Moreover, the autophagy level of BMSCs, regulating their stemness, was promoted in the coculture group, mediated by the AMPK/mTOR pathway. In addition, AMPK inhibitor compound C could significantly downregulate the protein expression of LC3 and the mRNA level of stemness genes in the coculture group. Finally, we found that the NK1 receptor antagonist, aprepitant, could partly block this effect, which indicated that substance P played an important role in the effect. Together, we conclude that DRG could maintain the stemness of BMSCs by enhancing autophagy through the AMPK/mTOR pathway in a transwell coculture system, which may help explain the better osteogenesis after implantation of the sensory nerve into TEB.
format Online
Article
Text
id pubmed-6186314
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-61863142018-10-24 Dorsal Root Ganglion Maintains Stemness of Bone Marrow Mesenchymal Stem Cells by Enhancing Autophagy through the AMPK/mTOR Pathway in a Coculture System Zhang, Shuaishuai Li, Junqin Jiang, Huijie Gao, Yi Cheng, Pengzhen Cao, Tianqing Li, Donglin Wang, Jimeng Song, Yue Liu, Bin Wu, Hao Wang, Chunmei Yang, Liu Pei, Guoxian Stem Cells Int Research Article Our previous studies found that sensory nerve tracts implanted in tissue-engineered bone (TEB) could result in better osteogenesis. To explore the mechanism of the sensory nerve promoting osteogenesis in TEB in vitro, a transwell coculture experiment was designed between dorsal root ganglion (DRG) cells and bone marrow mesenchymal stem cells (BMSCs). BMSC proliferation was determined by CCK8 assay, and osteo-, chondro-, and adipogenic differentiation were assessed by alizarin red, alcian blue, and oil red staining. We found that the proliferation and multipotent differentiation of BMSCs were all enhanced in the coculture group compared to the BMSCs group. Crystal violet staining showed that the clone-forming ability of BMSCs in the coculture group was also enhanced and mRNA levels of Sox2, Nanog, and Oct4 were significantly upregulated in the coculture group. Moreover, the autophagy level of BMSCs, regulating their stemness, was promoted in the coculture group, mediated by the AMPK/mTOR pathway. In addition, AMPK inhibitor compound C could significantly downregulate the protein expression of LC3 and the mRNA level of stemness genes in the coculture group. Finally, we found that the NK1 receptor antagonist, aprepitant, could partly block this effect, which indicated that substance P played an important role in the effect. Together, we conclude that DRG could maintain the stemness of BMSCs by enhancing autophagy through the AMPK/mTOR pathway in a transwell coculture system, which may help explain the better osteogenesis after implantation of the sensory nerve into TEB. Hindawi 2018-09-30 /pmc/articles/PMC6186314/ /pubmed/30363977 http://dx.doi.org/10.1155/2018/8478953 Text en Copyright © 2018 Shuaishuai Zhang et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Zhang, Shuaishuai
Li, Junqin
Jiang, Huijie
Gao, Yi
Cheng, Pengzhen
Cao, Tianqing
Li, Donglin
Wang, Jimeng
Song, Yue
Liu, Bin
Wu, Hao
Wang, Chunmei
Yang, Liu
Pei, Guoxian
Dorsal Root Ganglion Maintains Stemness of Bone Marrow Mesenchymal Stem Cells by Enhancing Autophagy through the AMPK/mTOR Pathway in a Coculture System
title Dorsal Root Ganglion Maintains Stemness of Bone Marrow Mesenchymal Stem Cells by Enhancing Autophagy through the AMPK/mTOR Pathway in a Coculture System
title_full Dorsal Root Ganglion Maintains Stemness of Bone Marrow Mesenchymal Stem Cells by Enhancing Autophagy through the AMPK/mTOR Pathway in a Coculture System
title_fullStr Dorsal Root Ganglion Maintains Stemness of Bone Marrow Mesenchymal Stem Cells by Enhancing Autophagy through the AMPK/mTOR Pathway in a Coculture System
title_full_unstemmed Dorsal Root Ganglion Maintains Stemness of Bone Marrow Mesenchymal Stem Cells by Enhancing Autophagy through the AMPK/mTOR Pathway in a Coculture System
title_short Dorsal Root Ganglion Maintains Stemness of Bone Marrow Mesenchymal Stem Cells by Enhancing Autophagy through the AMPK/mTOR Pathway in a Coculture System
title_sort dorsal root ganglion maintains stemness of bone marrow mesenchymal stem cells by enhancing autophagy through the ampk/mtor pathway in a coculture system
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6186314/
https://www.ncbi.nlm.nih.gov/pubmed/30363977
http://dx.doi.org/10.1155/2018/8478953
work_keys_str_mv AT zhangshuaishuai dorsalrootganglionmaintainsstemnessofbonemarrowmesenchymalstemcellsbyenhancingautophagythroughtheampkmtorpathwayinacoculturesystem
AT lijunqin dorsalrootganglionmaintainsstemnessofbonemarrowmesenchymalstemcellsbyenhancingautophagythroughtheampkmtorpathwayinacoculturesystem
AT jianghuijie dorsalrootganglionmaintainsstemnessofbonemarrowmesenchymalstemcellsbyenhancingautophagythroughtheampkmtorpathwayinacoculturesystem
AT gaoyi dorsalrootganglionmaintainsstemnessofbonemarrowmesenchymalstemcellsbyenhancingautophagythroughtheampkmtorpathwayinacoculturesystem
AT chengpengzhen dorsalrootganglionmaintainsstemnessofbonemarrowmesenchymalstemcellsbyenhancingautophagythroughtheampkmtorpathwayinacoculturesystem
AT caotianqing dorsalrootganglionmaintainsstemnessofbonemarrowmesenchymalstemcellsbyenhancingautophagythroughtheampkmtorpathwayinacoculturesystem
AT lidonglin dorsalrootganglionmaintainsstemnessofbonemarrowmesenchymalstemcellsbyenhancingautophagythroughtheampkmtorpathwayinacoculturesystem
AT wangjimeng dorsalrootganglionmaintainsstemnessofbonemarrowmesenchymalstemcellsbyenhancingautophagythroughtheampkmtorpathwayinacoculturesystem
AT songyue dorsalrootganglionmaintainsstemnessofbonemarrowmesenchymalstemcellsbyenhancingautophagythroughtheampkmtorpathwayinacoculturesystem
AT liubin dorsalrootganglionmaintainsstemnessofbonemarrowmesenchymalstemcellsbyenhancingautophagythroughtheampkmtorpathwayinacoculturesystem
AT wuhao dorsalrootganglionmaintainsstemnessofbonemarrowmesenchymalstemcellsbyenhancingautophagythroughtheampkmtorpathwayinacoculturesystem
AT wangchunmei dorsalrootganglionmaintainsstemnessofbonemarrowmesenchymalstemcellsbyenhancingautophagythroughtheampkmtorpathwayinacoculturesystem
AT yangliu dorsalrootganglionmaintainsstemnessofbonemarrowmesenchymalstemcellsbyenhancingautophagythroughtheampkmtorpathwayinacoculturesystem
AT peiguoxian dorsalrootganglionmaintainsstemnessofbonemarrowmesenchymalstemcellsbyenhancingautophagythroughtheampkmtorpathwayinacoculturesystem