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Natural hydrogels for cartilage regeneration: Modification, preparation and application

Hydrogels, consisting of hydrophilic polymers, can be used as films, scaffolds, nanoparticles and drug carriers. They are one of the hot research topics in material science and tissue engineering and are widely used in the field of biomedical and biological sciences. Researchers are seeking for a ty...

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Autores principales: Li, Lan, Yu, Fei, Zheng, Liming, Wang, Rongliang, Yan, Wenqiang, Wang, Zixu, Xu, Jia, Wu, Jianxiang, Shi, Dongquan, Zhu, Liya, Wang, Xingsong, Jiang, Qing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Chinese Speaking Orthopaedic Society 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6551352/
https://www.ncbi.nlm.nih.gov/pubmed/31194006
http://dx.doi.org/10.1016/j.jot.2018.09.003
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author Li, Lan
Yu, Fei
Zheng, Liming
Wang, Rongliang
Yan, Wenqiang
Wang, Zixu
Xu, Jia
Wu, Jianxiang
Shi, Dongquan
Zhu, Liya
Wang, Xingsong
Jiang, Qing
author_facet Li, Lan
Yu, Fei
Zheng, Liming
Wang, Rongliang
Yan, Wenqiang
Wang, Zixu
Xu, Jia
Wu, Jianxiang
Shi, Dongquan
Zhu, Liya
Wang, Xingsong
Jiang, Qing
author_sort Li, Lan
collection PubMed
description Hydrogels, consisting of hydrophilic polymers, can be used as films, scaffolds, nanoparticles and drug carriers. They are one of the hot research topics in material science and tissue engineering and are widely used in the field of biomedical and biological sciences. Researchers are seeking for a type of material that is similar to human tissues and can partially replace human tissues or organs. The hydrogel has brought possibility to solve this problem. It has good biocompatibility and biodegradability. After entering the body, it does not cause immune and toxic reactions. The degradation time can be controlled, and the degradation products are nontoxic and nonimmunogenic; the final metabolites can be excreted outside the body. Owing to the lack of blood vessels and poor migration ability of chondrocytes, the self-healing ability of damaged cartilage is limited. Tissue engineering has brought a new direction for the regeneration of cartilage. Drug carriers and scaffolds made of hydrogels are widely used in cartilage tissue engineering. The present review introduces the natural hydrogels, which are often used for cartilage tissue engineering with respect to synthesis, modification and application methods. THE TRANSLATIONAL POTENTIAL OF THIS ARTICLE: This review introduces the natural hydrogels that are often used in cartilage tissue engineering with respect to synthesis, modification and application methods. Furthermore, the essential concepts and recent discoveries were demonstrated to illustrate the achievable goals and the current limitations. In addition, we propose the putative challenges and directions for the use of natural hydrogels in cartilage regeneration.
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spelling pubmed-65513522019-06-10 Natural hydrogels for cartilage regeneration: Modification, preparation and application Li, Lan Yu, Fei Zheng, Liming Wang, Rongliang Yan, Wenqiang Wang, Zixu Xu, Jia Wu, Jianxiang Shi, Dongquan Zhu, Liya Wang, Xingsong Jiang, Qing J Orthop Translat Review Article Hydrogels, consisting of hydrophilic polymers, can be used as films, scaffolds, nanoparticles and drug carriers. They are one of the hot research topics in material science and tissue engineering and are widely used in the field of biomedical and biological sciences. Researchers are seeking for a type of material that is similar to human tissues and can partially replace human tissues or organs. The hydrogel has brought possibility to solve this problem. It has good biocompatibility and biodegradability. After entering the body, it does not cause immune and toxic reactions. The degradation time can be controlled, and the degradation products are nontoxic and nonimmunogenic; the final metabolites can be excreted outside the body. Owing to the lack of blood vessels and poor migration ability of chondrocytes, the self-healing ability of damaged cartilage is limited. Tissue engineering has brought a new direction for the regeneration of cartilage. Drug carriers and scaffolds made of hydrogels are widely used in cartilage tissue engineering. The present review introduces the natural hydrogels, which are often used for cartilage tissue engineering with respect to synthesis, modification and application methods. THE TRANSLATIONAL POTENTIAL OF THIS ARTICLE: This review introduces the natural hydrogels that are often used in cartilage tissue engineering with respect to synthesis, modification and application methods. Furthermore, the essential concepts and recent discoveries were demonstrated to illustrate the achievable goals and the current limitations. In addition, we propose the putative challenges and directions for the use of natural hydrogels in cartilage regeneration. Chinese Speaking Orthopaedic Society 2018-10-14 /pmc/articles/PMC6551352/ /pubmed/31194006 http://dx.doi.org/10.1016/j.jot.2018.09.003 Text en © 2018 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 Review Article
Li, Lan
Yu, Fei
Zheng, Liming
Wang, Rongliang
Yan, Wenqiang
Wang, Zixu
Xu, Jia
Wu, Jianxiang
Shi, Dongquan
Zhu, Liya
Wang, Xingsong
Jiang, Qing
Natural hydrogels for cartilage regeneration: Modification, preparation and application
title Natural hydrogels for cartilage regeneration: Modification, preparation and application
title_full Natural hydrogels for cartilage regeneration: Modification, preparation and application
title_fullStr Natural hydrogels for cartilage regeneration: Modification, preparation and application
title_full_unstemmed Natural hydrogels for cartilage regeneration: Modification, preparation and application
title_short Natural hydrogels for cartilage regeneration: Modification, preparation and application
title_sort natural hydrogels for cartilage regeneration: modification, preparation and application
topic Review Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6551352/
https://www.ncbi.nlm.nih.gov/pubmed/31194006
http://dx.doi.org/10.1016/j.jot.2018.09.003
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