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Surface‐Anchored Nanogel Coating Endows Stem Cells with Stress Resistance and Reparative Potency via Turning Down the Cytokine‐Receptor Binding Pathways

Stem cell‐based therapy has great potential in regenerative medicine. However, the survival and engraftment rates of transplanted stem cells in disease regions are poor and limit the effectiveness of cell therapy due to the fragility of stem cells. Here, an approach involving a single‐cell coating o...

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Autores principales: Zhang, Ling, Liu, Guowu, Lv, Kaiqi, Xin, Jinxia, Wang, Yingchao, Zhao, Jing, Hu, Wangxing, Xiao, Changchen, Zhu, Keyang, Zhu, Lianlian, Nan, Jinliang, Feng, Ye, Zhu, Huaying, Chen, Wei, Zhu, Wei, Zhang, Jianyi, Wang, Jian'an, Wang, Ben, Hu, Xinyang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7856906/
https://www.ncbi.nlm.nih.gov/pubmed/33552872
http://dx.doi.org/10.1002/advs.202003348
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author Zhang, Ling
Liu, Guowu
Lv, Kaiqi
Xin, Jinxia
Wang, Yingchao
Zhao, Jing
Hu, Wangxing
Xiao, Changchen
Zhu, Keyang
Zhu, Lianlian
Nan, Jinliang
Feng, Ye
Zhu, Huaying
Chen, Wei
Zhu, Wei
Zhang, Jianyi
Wang, Jian'an
Wang, Ben
Hu, Xinyang
author_facet Zhang, Ling
Liu, Guowu
Lv, Kaiqi
Xin, Jinxia
Wang, Yingchao
Zhao, Jing
Hu, Wangxing
Xiao, Changchen
Zhu, Keyang
Zhu, Lianlian
Nan, Jinliang
Feng, Ye
Zhu, Huaying
Chen, Wei
Zhu, Wei
Zhang, Jianyi
Wang, Jian'an
Wang, Ben
Hu, Xinyang
author_sort Zhang, Ling
collection PubMed
description Stem cell‐based therapy has great potential in regenerative medicine. However, the survival and engraftment rates of transplanted stem cells in disease regions are poor and limit the effectiveness of cell therapy due to the fragility of stem cells. Here, an approach involving a single‐cell coating of surface‐anchored nanogel to regulate stem cell fate with anti‐apoptosis capacity in the hypoxic and ischemic environment of infarcted hearts is developed for the first time. A polysialic acid‐based system is used to anchor microbial transglutaminase to the external surface of the cell membrane, where it catalyzes the crosslinking of gelatin. The single‐cell coating with surface‐anchored nanogel endows mesenchymal stem cells (MSCs) with stress resistance by blocking the activity of apoptotic cytokines including the binding of tumor necrosis factor α (TNFα) to tumor necrosis factor receptor, which in turn maintains mitochondrial integrity, function and protects MSCs from TNFα‐induces apoptosis. The administration of surface engineered MSCs to hearts results in significant improvements in engraftment, cardiac function, infarct size, and vascularity compared with using uncoated MSCs in treating myocardial infarction. The surface‐anchored, biocompatible cell surface engineering with nanogel armor provides a new way to produce robust therapeutic stem cells and may explore immense potentials in cell‐based therapy.
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spelling pubmed-78569062021-02-05 Surface‐Anchored Nanogel Coating Endows Stem Cells with Stress Resistance and Reparative Potency via Turning Down the Cytokine‐Receptor Binding Pathways Zhang, Ling Liu, Guowu Lv, Kaiqi Xin, Jinxia Wang, Yingchao Zhao, Jing Hu, Wangxing Xiao, Changchen Zhu, Keyang Zhu, Lianlian Nan, Jinliang Feng, Ye Zhu, Huaying Chen, Wei Zhu, Wei Zhang, Jianyi Wang, Jian'an Wang, Ben Hu, Xinyang Adv Sci (Weinh) Full Papers Stem cell‐based therapy has great potential in regenerative medicine. However, the survival and engraftment rates of transplanted stem cells in disease regions are poor and limit the effectiveness of cell therapy due to the fragility of stem cells. Here, an approach involving a single‐cell coating of surface‐anchored nanogel to regulate stem cell fate with anti‐apoptosis capacity in the hypoxic and ischemic environment of infarcted hearts is developed for the first time. A polysialic acid‐based system is used to anchor microbial transglutaminase to the external surface of the cell membrane, where it catalyzes the crosslinking of gelatin. The single‐cell coating with surface‐anchored nanogel endows mesenchymal stem cells (MSCs) with stress resistance by blocking the activity of apoptotic cytokines including the binding of tumor necrosis factor α (TNFα) to tumor necrosis factor receptor, which in turn maintains mitochondrial integrity, function and protects MSCs from TNFα‐induces apoptosis. The administration of surface engineered MSCs to hearts results in significant improvements in engraftment, cardiac function, infarct size, and vascularity compared with using uncoated MSCs in treating myocardial infarction. The surface‐anchored, biocompatible cell surface engineering with nanogel armor provides a new way to produce robust therapeutic stem cells and may explore immense potentials in cell‐based therapy. John Wiley and Sons Inc. 2021-01-06 /pmc/articles/PMC7856906/ /pubmed/33552872 http://dx.doi.org/10.1002/advs.202003348 Text en © 2021 The Authors. Advanced Science published by Wiley‐VCH GmbH This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Zhang, Ling
Liu, Guowu
Lv, Kaiqi
Xin, Jinxia
Wang, Yingchao
Zhao, Jing
Hu, Wangxing
Xiao, Changchen
Zhu, Keyang
Zhu, Lianlian
Nan, Jinliang
Feng, Ye
Zhu, Huaying
Chen, Wei
Zhu, Wei
Zhang, Jianyi
Wang, Jian'an
Wang, Ben
Hu, Xinyang
Surface‐Anchored Nanogel Coating Endows Stem Cells with Stress Resistance and Reparative Potency via Turning Down the Cytokine‐Receptor Binding Pathways
title Surface‐Anchored Nanogel Coating Endows Stem Cells with Stress Resistance and Reparative Potency via Turning Down the Cytokine‐Receptor Binding Pathways
title_full Surface‐Anchored Nanogel Coating Endows Stem Cells with Stress Resistance and Reparative Potency via Turning Down the Cytokine‐Receptor Binding Pathways
title_fullStr Surface‐Anchored Nanogel Coating Endows Stem Cells with Stress Resistance and Reparative Potency via Turning Down the Cytokine‐Receptor Binding Pathways
title_full_unstemmed Surface‐Anchored Nanogel Coating Endows Stem Cells with Stress Resistance and Reparative Potency via Turning Down the Cytokine‐Receptor Binding Pathways
title_short Surface‐Anchored Nanogel Coating Endows Stem Cells with Stress Resistance and Reparative Potency via Turning Down the Cytokine‐Receptor Binding Pathways
title_sort surface‐anchored nanogel coating endows stem cells with stress resistance and reparative potency via turning down the cytokine‐receptor binding pathways
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7856906/
https://www.ncbi.nlm.nih.gov/pubmed/33552872
http://dx.doi.org/10.1002/advs.202003348
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