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Metabolic Glycoengineering: A Promising Strategy to Remodel Microenvironments for Regenerative Therapy

Cell-based regenerative therapy utilizes the differentiation potential of stem cells to rejuvenate tissues. But the dynamic fate of stem cells is calling for precise control to optimize their therapeutic efficiency. Stem cell fate is regulated by specific conditions called “microenvironments.” Among...

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Detalles Bibliográficos
Autores principales: Li, Yi, Zhang, Yuang, Tao, Yiqin, Huang, Xianpeng, Yu, Chao, Xu, Haibin, Chen, Jiangjie, Xia, Kaishun, Shi, Kesi, Zhang, Yongxiang, Wang, Jingkai, Shu, Jiawei, Cheng, Feng, Wang, Shaoke, Liang, Chengzhen, Li, Fangcai, Zhou, Xiaopeng, Chen, Qixin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9940976/
https://www.ncbi.nlm.nih.gov/pubmed/36814525
http://dx.doi.org/10.1155/2023/1655750
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author Li, Yi
Zhang, Yuang
Tao, Yiqin
Huang, Xianpeng
Yu, Chao
Xu, Haibin
Chen, Jiangjie
Xia, Kaishun
Shi, Kesi
Zhang, Yongxiang
Wang, Jingkai
Shu, Jiawei
Cheng, Feng
Wang, Shaoke
Liang, Chengzhen
Li, Fangcai
Zhou, Xiaopeng
Chen, Qixin
author_facet Li, Yi
Zhang, Yuang
Tao, Yiqin
Huang, Xianpeng
Yu, Chao
Xu, Haibin
Chen, Jiangjie
Xia, Kaishun
Shi, Kesi
Zhang, Yongxiang
Wang, Jingkai
Shu, Jiawei
Cheng, Feng
Wang, Shaoke
Liang, Chengzhen
Li, Fangcai
Zhou, Xiaopeng
Chen, Qixin
author_sort Li, Yi
collection PubMed
description Cell-based regenerative therapy utilizes the differentiation potential of stem cells to rejuvenate tissues. But the dynamic fate of stem cells is calling for precise control to optimize their therapeutic efficiency. Stem cell fate is regulated by specific conditions called “microenvironments.” Among the various factors in the microenvironment, the cell-surface glycan acts as a mediator of cell-matrix and cell-cell interactions and manipulates the behavior of cells. Herein, metabolic glycoengineering (MGE) is an easy but powerful technology for remodeling the structure of glycan. By presenting unnatural glycans on the surface, MGE provides us an opportunity to reshape the microenvironment and evoke desired cellular responses. In this review, we firstly focused on the determining role of glycans on cellular activity; then, we introduced how MGE influences glycosylation and subsequently affects cell fate; at last, we outlined the application of MGE in regenerative therapy, especially in the musculoskeletal system, and the future direction of MGE is discussed.
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spelling pubmed-99409762023-02-21 Metabolic Glycoengineering: A Promising Strategy to Remodel Microenvironments for Regenerative Therapy Li, Yi Zhang, Yuang Tao, Yiqin Huang, Xianpeng Yu, Chao Xu, Haibin Chen, Jiangjie Xia, Kaishun Shi, Kesi Zhang, Yongxiang Wang, Jingkai Shu, Jiawei Cheng, Feng Wang, Shaoke Liang, Chengzhen Li, Fangcai Zhou, Xiaopeng Chen, Qixin Stem Cells Int Review Article Cell-based regenerative therapy utilizes the differentiation potential of stem cells to rejuvenate tissues. But the dynamic fate of stem cells is calling for precise control to optimize their therapeutic efficiency. Stem cell fate is regulated by specific conditions called “microenvironments.” Among the various factors in the microenvironment, the cell-surface glycan acts as a mediator of cell-matrix and cell-cell interactions and manipulates the behavior of cells. Herein, metabolic glycoengineering (MGE) is an easy but powerful technology for remodeling the structure of glycan. By presenting unnatural glycans on the surface, MGE provides us an opportunity to reshape the microenvironment and evoke desired cellular responses. In this review, we firstly focused on the determining role of glycans on cellular activity; then, we introduced how MGE influences glycosylation and subsequently affects cell fate; at last, we outlined the application of MGE in regenerative therapy, especially in the musculoskeletal system, and the future direction of MGE is discussed. Hindawi 2023-02-13 /pmc/articles/PMC9940976/ /pubmed/36814525 http://dx.doi.org/10.1155/2023/1655750 Text en Copyright © 2023 Yi Li et al. https://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 Review Article
Li, Yi
Zhang, Yuang
Tao, Yiqin
Huang, Xianpeng
Yu, Chao
Xu, Haibin
Chen, Jiangjie
Xia, Kaishun
Shi, Kesi
Zhang, Yongxiang
Wang, Jingkai
Shu, Jiawei
Cheng, Feng
Wang, Shaoke
Liang, Chengzhen
Li, Fangcai
Zhou, Xiaopeng
Chen, Qixin
Metabolic Glycoengineering: A Promising Strategy to Remodel Microenvironments for Regenerative Therapy
title Metabolic Glycoengineering: A Promising Strategy to Remodel Microenvironments for Regenerative Therapy
title_full Metabolic Glycoengineering: A Promising Strategy to Remodel Microenvironments for Regenerative Therapy
title_fullStr Metabolic Glycoengineering: A Promising Strategy to Remodel Microenvironments for Regenerative Therapy
title_full_unstemmed Metabolic Glycoengineering: A Promising Strategy to Remodel Microenvironments for Regenerative Therapy
title_short Metabolic Glycoengineering: A Promising Strategy to Remodel Microenvironments for Regenerative Therapy
title_sort metabolic glycoengineering: a promising strategy to remodel microenvironments for regenerative therapy
topic Review Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9940976/
https://www.ncbi.nlm.nih.gov/pubmed/36814525
http://dx.doi.org/10.1155/2023/1655750
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