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Effects of magnetically targeted iron oxide@polydopamine-labeled human umbilical cord mesenchymal stem cells in cerebral infarction in mice

Mesenchymal stem cells are a potential therapeutic candidate for cerebral infarction due to their anti-inflammatory proprieties. However, ensuring the engraftment of sufficient cells into the affected brain area remains a challenge. Herein, magnetic targeting techniques were used for the transplanta...

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Autores principales: Yan, Jun, Liu, Te, Li, Yang, Zhang, Jun, Shi, Bo, Zhang, Fuqiang, Hou, Xuejia, Zhang, Xiaowen, Cui, Wanxing, Li, Jing, Yao, Hua, Li, Xiuying, Gao, Yufei, Jiang, Jinlan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10008509/
https://www.ncbi.nlm.nih.gov/pubmed/36812482
http://dx.doi.org/10.18632/aging.204540
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author Yan, Jun
Liu, Te
Li, Yang
Zhang, Jun
Shi, Bo
Zhang, Fuqiang
Hou, Xuejia
Zhang, Xiaowen
Cui, Wanxing
Li, Jing
Yao, Hua
Li, Xiuying
Gao, Yufei
Jiang, Jinlan
author_facet Yan, Jun
Liu, Te
Li, Yang
Zhang, Jun
Shi, Bo
Zhang, Fuqiang
Hou, Xuejia
Zhang, Xiaowen
Cui, Wanxing
Li, Jing
Yao, Hua
Li, Xiuying
Gao, Yufei
Jiang, Jinlan
author_sort Yan, Jun
collection PubMed
description Mesenchymal stem cells are a potential therapeutic candidate for cerebral infarction due to their anti-inflammatory proprieties. However, ensuring the engraftment of sufficient cells into the affected brain area remains a challenge. Herein, magnetic targeting techniques were used for the transplantation of a large number of cells noninvasively. Mice subjected to pMCAO surgery were administered MSCs labeled or not with iron oxide@polydopamine nanoparticles by tail vein injection. Iron oxide@polydopamine particles were characterized by transmission electron microscopy, and labeled MSCs were characterized by flow cytometry and their differentiation potential was assessed in vitro. Following the systemic injection of iron oxide@polydopamine-labeled MSCs into pMCAO-induced mices, magnetic navigation increased the MSCs localization to the brain lesion site and reduced the lesion volume. Treatment with iron oxide@polydopamine-labeled MSCs also significantly inhibited M1 microglia polarization and increased M2 microglia cell infiltration. Furthermore, western blotting and immunohistochemical analysis demonstrated that microtubule-associated protein 2 and NeuN levels were upregulated the brain tissue of mice treated with iron oxide@polydopamine-labeled MSCs. Thus, iron oxide@polydopamine-labeled MSCs attenuated brain injury and protected neurons by preventing pro-inflammatory microglia activation. Overall, the proposed iron oxide@polydopamine-labeled MSCs approach may overcome the major drawback of the conventional MSCs therapy for the treatment of cerebral infarction.
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spelling pubmed-100085092023-03-13 Effects of magnetically targeted iron oxide@polydopamine-labeled human umbilical cord mesenchymal stem cells in cerebral infarction in mice Yan, Jun Liu, Te Li, Yang Zhang, Jun Shi, Bo Zhang, Fuqiang Hou, Xuejia Zhang, Xiaowen Cui, Wanxing Li, Jing Yao, Hua Li, Xiuying Gao, Yufei Jiang, Jinlan Aging (Albany NY) Research Paper Mesenchymal stem cells are a potential therapeutic candidate for cerebral infarction due to their anti-inflammatory proprieties. However, ensuring the engraftment of sufficient cells into the affected brain area remains a challenge. Herein, magnetic targeting techniques were used for the transplantation of a large number of cells noninvasively. Mice subjected to pMCAO surgery were administered MSCs labeled or not with iron oxide@polydopamine nanoparticles by tail vein injection. Iron oxide@polydopamine particles were characterized by transmission electron microscopy, and labeled MSCs were characterized by flow cytometry and their differentiation potential was assessed in vitro. Following the systemic injection of iron oxide@polydopamine-labeled MSCs into pMCAO-induced mices, magnetic navigation increased the MSCs localization to the brain lesion site and reduced the lesion volume. Treatment with iron oxide@polydopamine-labeled MSCs also significantly inhibited M1 microglia polarization and increased M2 microglia cell infiltration. Furthermore, western blotting and immunohistochemical analysis demonstrated that microtubule-associated protein 2 and NeuN levels were upregulated the brain tissue of mice treated with iron oxide@polydopamine-labeled MSCs. Thus, iron oxide@polydopamine-labeled MSCs attenuated brain injury and protected neurons by preventing pro-inflammatory microglia activation. Overall, the proposed iron oxide@polydopamine-labeled MSCs approach may overcome the major drawback of the conventional MSCs therapy for the treatment of cerebral infarction. Impact Journals 2023-02-23 /pmc/articles/PMC10008509/ /pubmed/36812482 http://dx.doi.org/10.18632/aging.204540 Text en Copyright: © 2023 Yan et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Yan, Jun
Liu, Te
Li, Yang
Zhang, Jun
Shi, Bo
Zhang, Fuqiang
Hou, Xuejia
Zhang, Xiaowen
Cui, Wanxing
Li, Jing
Yao, Hua
Li, Xiuying
Gao, Yufei
Jiang, Jinlan
Effects of magnetically targeted iron oxide@polydopamine-labeled human umbilical cord mesenchymal stem cells in cerebral infarction in mice
title Effects of magnetically targeted iron oxide@polydopamine-labeled human umbilical cord mesenchymal stem cells in cerebral infarction in mice
title_full Effects of magnetically targeted iron oxide@polydopamine-labeled human umbilical cord mesenchymal stem cells in cerebral infarction in mice
title_fullStr Effects of magnetically targeted iron oxide@polydopamine-labeled human umbilical cord mesenchymal stem cells in cerebral infarction in mice
title_full_unstemmed Effects of magnetically targeted iron oxide@polydopamine-labeled human umbilical cord mesenchymal stem cells in cerebral infarction in mice
title_short Effects of magnetically targeted iron oxide@polydopamine-labeled human umbilical cord mesenchymal stem cells in cerebral infarction in mice
title_sort effects of magnetically targeted iron oxide@polydopamine-labeled human umbilical cord mesenchymal stem cells in cerebral infarction in mice
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10008509/
https://www.ncbi.nlm.nih.gov/pubmed/36812482
http://dx.doi.org/10.18632/aging.204540
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