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Injectable kartogenin and apocynin loaded micelle enhances the alleviation of intervertebral disc degeneration by adipose-derived stem cell

Cell transplantation has been proved the promising therapeutic effects on intervertebral disc degeneration (IVDD). However, the increased levels of reactive oxygen species (ROS) in the degenerated region will impede the efficiency of human adipose-derived stem cells (human ADSCs) transplantation the...

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Autores principales: Yu, Chao, Li, Dongdong, Wang, Chenggui, Xia, Kaishun, Wang, Jingkai, Zhou, Xiaopeng, Ying, Liwei, Shu, Jiawei, Huang, Xianpeng, Xu, Haibin, Han, Bin, Chen, Qixin, Li, Fangcai, Tang, Jianbin, Liang, Chengzhen, Slater, Nigel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8022109/
https://www.ncbi.nlm.nih.gov/pubmed/33842742
http://dx.doi.org/10.1016/j.bioactmat.2021.03.018
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author Yu, Chao
Li, Dongdong
Wang, Chenggui
Xia, Kaishun
Wang, Jingkai
Zhou, Xiaopeng
Ying, Liwei
Shu, Jiawei
Huang, Xianpeng
Xu, Haibin
Han, Bin
Chen, Qixin
Li, Fangcai
Tang, Jianbin
Liang, Chengzhen
Slater, Nigel
author_facet Yu, Chao
Li, Dongdong
Wang, Chenggui
Xia, Kaishun
Wang, Jingkai
Zhou, Xiaopeng
Ying, Liwei
Shu, Jiawei
Huang, Xianpeng
Xu, Haibin
Han, Bin
Chen, Qixin
Li, Fangcai
Tang, Jianbin
Liang, Chengzhen
Slater, Nigel
author_sort Yu, Chao
collection PubMed
description Cell transplantation has been proved the promising therapeutic effects on intervertebral disc degeneration (IVDD). However, the increased levels of reactive oxygen species (ROS) in the degenerated region will impede the efficiency of human adipose-derived stem cells (human ADSCs) transplantation therapy. It inhibits human ADSCs proliferation, and increases human ADSCs apoptosis. Herein, we firstly devised a novel amphiphilic copolymer PEG-PAPO, which could self-assemble into a nanosized micelle and load lipophilic kartogenin (KGN), as a single complex (PAKM). It was an injectable esterase-responsive micelle, and showed controlled release ability of KGN and apocynin (APO). Oxidative stimulation promoted the esterase activity in human ADSCs, which accelerate degradation of esterase-responsive micelle. Compared its monomer, the PAKM micelle possessed better bioactivities, which were attributed to their synergistic effect. It enhanced the viability, autophagic activation (P62, LC3 II), ECM-related transcription factor (SOX9), and ECM (Collagen II, Aggrecan) maintenance in human ADSCs. Furthermore, it is demonstrated that the injection of PAKM with human ADSCs yielded higher disc height and water content in rats. Therefore, PAKM micelles perform promoting cell survival and differentiation effects, and may be a potential therapeutic agent for IVDD.
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spelling pubmed-80221092021-04-08 Injectable kartogenin and apocynin loaded micelle enhances the alleviation of intervertebral disc degeneration by adipose-derived stem cell Yu, Chao Li, Dongdong Wang, Chenggui Xia, Kaishun Wang, Jingkai Zhou, Xiaopeng Ying, Liwei Shu, Jiawei Huang, Xianpeng Xu, Haibin Han, Bin Chen, Qixin Li, Fangcai Tang, Jianbin Liang, Chengzhen Slater, Nigel Bioact Mater Article Cell transplantation has been proved the promising therapeutic effects on intervertebral disc degeneration (IVDD). However, the increased levels of reactive oxygen species (ROS) in the degenerated region will impede the efficiency of human adipose-derived stem cells (human ADSCs) transplantation therapy. It inhibits human ADSCs proliferation, and increases human ADSCs apoptosis. Herein, we firstly devised a novel amphiphilic copolymer PEG-PAPO, which could self-assemble into a nanosized micelle and load lipophilic kartogenin (KGN), as a single complex (PAKM). It was an injectable esterase-responsive micelle, and showed controlled release ability of KGN and apocynin (APO). Oxidative stimulation promoted the esterase activity in human ADSCs, which accelerate degradation of esterase-responsive micelle. Compared its monomer, the PAKM micelle possessed better bioactivities, which were attributed to their synergistic effect. It enhanced the viability, autophagic activation (P62, LC3 II), ECM-related transcription factor (SOX9), and ECM (Collagen II, Aggrecan) maintenance in human ADSCs. Furthermore, it is demonstrated that the injection of PAKM with human ADSCs yielded higher disc height and water content in rats. Therefore, PAKM micelles perform promoting cell survival and differentiation effects, and may be a potential therapeutic agent for IVDD. KeAi Publishing 2021-03-23 /pmc/articles/PMC8022109/ /pubmed/33842742 http://dx.doi.org/10.1016/j.bioactmat.2021.03.018 Text en © 2021 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Yu, Chao
Li, Dongdong
Wang, Chenggui
Xia, Kaishun
Wang, Jingkai
Zhou, Xiaopeng
Ying, Liwei
Shu, Jiawei
Huang, Xianpeng
Xu, Haibin
Han, Bin
Chen, Qixin
Li, Fangcai
Tang, Jianbin
Liang, Chengzhen
Slater, Nigel
Injectable kartogenin and apocynin loaded micelle enhances the alleviation of intervertebral disc degeneration by adipose-derived stem cell
title Injectable kartogenin and apocynin loaded micelle enhances the alleviation of intervertebral disc degeneration by adipose-derived stem cell
title_full Injectable kartogenin and apocynin loaded micelle enhances the alleviation of intervertebral disc degeneration by adipose-derived stem cell
title_fullStr Injectable kartogenin and apocynin loaded micelle enhances the alleviation of intervertebral disc degeneration by adipose-derived stem cell
title_full_unstemmed Injectable kartogenin and apocynin loaded micelle enhances the alleviation of intervertebral disc degeneration by adipose-derived stem cell
title_short Injectable kartogenin and apocynin loaded micelle enhances the alleviation of intervertebral disc degeneration by adipose-derived stem cell
title_sort injectable kartogenin and apocynin loaded micelle enhances the alleviation of intervertebral disc degeneration by adipose-derived stem cell
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8022109/
https://www.ncbi.nlm.nih.gov/pubmed/33842742
http://dx.doi.org/10.1016/j.bioactmat.2021.03.018
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