Magnetic hydrogels with ordered structure for biomedical applications

Magnetic hydrogels composed of hydrogel matrices and magnetic nanomaterials have attracted widespread interests. Thereinto, magnetic hydrogels with ordered structure possessing enhanced functionalities and unique architectures, show tremendous advantages in biomedical fields. The ordered structure b...

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Main Authors: Le Xue, Jianfei Sun
Format: Article
Language:English
Published: Frontiers Media S.A. 2022-10-01
Series:Frontiers in Chemistry
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fchem.2022.1040492/full
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author Le Xue
Jianfei Sun
author_facet Le Xue
Jianfei Sun
author_sort Le Xue
collection DOAJ
description Magnetic hydrogels composed of hydrogel matrices and magnetic nanomaterials have attracted widespread interests. Thereinto, magnetic hydrogels with ordered structure possessing enhanced functionalities and unique architectures, show tremendous advantages in biomedical fields. The ordered structure brought unique anisotropic properties and excellent physical properties. Furthermore, the anisotropic properties of magnetic ordered hydrogels are more analogous to biological tissues in morphology and mechanical property, showing better biocompatibility and bioinducibility. Thus, we aim to systematically describe the latest advances of magnetic hydrogels with ordered structure. Firstly, this review introduced the synthetic methods of magnetic hydrogels focus on constructing ordered structure. Then, their functionalities and biomedical applications are also summarized. Finally, the current challenges and a compelling perspective outlook of magnetic ordered hydrogel are present.
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spelling doaj.art-cd70a809d52841f688ced9c583e5aced2022-12-22T04:29:46ZengFrontiers Media S.A.Frontiers in Chemistry2296-26462022-10-011010.3389/fchem.2022.10404921040492Magnetic hydrogels with ordered structure for biomedical applicationsLe XueJianfei SunMagnetic hydrogels composed of hydrogel matrices and magnetic nanomaterials have attracted widespread interests. Thereinto, magnetic hydrogels with ordered structure possessing enhanced functionalities and unique architectures, show tremendous advantages in biomedical fields. The ordered structure brought unique anisotropic properties and excellent physical properties. Furthermore, the anisotropic properties of magnetic ordered hydrogels are more analogous to biological tissues in morphology and mechanical property, showing better biocompatibility and bioinducibility. Thus, we aim to systematically describe the latest advances of magnetic hydrogels with ordered structure. Firstly, this review introduced the synthetic methods of magnetic hydrogels focus on constructing ordered structure. Then, their functionalities and biomedical applications are also summarized. Finally, the current challenges and a compelling perspective outlook of magnetic ordered hydrogel are present.https://www.frontiersin.org/articles/10.3389/fchem.2022.1040492/fullordered structuremagnetic nanoparticlesmagnetic hydrogelsmagnetic fieldbiomedical applications
spellingShingle Le Xue
Jianfei Sun
Magnetic hydrogels with ordered structure for biomedical applications
Frontiers in Chemistry
ordered structure
magnetic nanoparticles
magnetic hydrogels
magnetic field
biomedical applications
title Magnetic hydrogels with ordered structure for biomedical applications
title_full Magnetic hydrogels with ordered structure for biomedical applications
title_fullStr Magnetic hydrogels with ordered structure for biomedical applications
title_full_unstemmed Magnetic hydrogels with ordered structure for biomedical applications
title_short Magnetic hydrogels with ordered structure for biomedical applications
title_sort magnetic hydrogels with ordered structure for biomedical applications
topic ordered structure
magnetic nanoparticles
magnetic hydrogels
magnetic field
biomedical applications
url https://www.frontiersin.org/articles/10.3389/fchem.2022.1040492/full
work_keys_str_mv AT lexue magnetichydrogelswithorderedstructureforbiomedicalapplications
AT jianfeisun magnetichydrogelswithorderedstructureforbiomedicalapplications