Literature DB >> 19280637

Can low frequency electromagnetic field help cartilage tissue engineering?

Chih-Hung Chang1, Siow-Tung Loo, Hsuan-Liang Liu, Hsu-Wei Fang, Hsin-Yi Lin.   

Abstract

To understand whether a low-frequency pulsed electromagnetic field (EMF) could help cartilage tissue repair in the scope of tissue engineering, we tested how EMF affected collagen gel properties and the behaviors of chondrocyte cells embedded in collagen constructs. Collagen gel and primary chondrocytes embedded in collagen were exposed to EMF for 24 h. Gel and cells that were not exposed to EMF served as controls. Collagen gel exposed to EMF was more hydrophobic and less susceptible to enzymatic degradation (both p < 0.05) than control. Three weeks after EMF exposure, chondrocytes showed higher proliferation and lower glycosaminoglycan (GAG) production (both p < 0.05) than control. By the end of the third week, aggrecan, type I, II, and X collagen mRNA expressions in the EMF group were 1.8 times higher (p < 0.05), except for type II collagen) than control. The increase in gene expression did not show up in aggrecan histological staining and type II and type X collagen immunohistochemical staining. Cells from both groups kept a normal polygonal shape through out the test period. Our results suggested that one-time EMF exposure could promote collagen-embedded chondrocytes proliferation and their gene expressions. It also promoted short-term (week 1) GAG production and lacuna formation. No apparent GAG and type II collagen production was seen in histological staining three weeks after the EMF exposure. (c) 2009 Wiley Periodicals, Inc.

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Year:  2010        PMID: 19280637     DOI: 10.1002/jbm.a.32405

Source DB:  PubMed          Journal:  J Biomed Mater Res A        ISSN: 1549-3296            Impact factor:   4.396


  7 in total

1.  Enhancing cartilage repair with optimized supramolecular hydrogel-based scaffold and pulsed electromagnetic field.

Authors:  Yucong Li; Linlong Li; Ye Li; Lu Feng; Bin Wang; Ming Wang; Haixing Wang; Meiling Zhu; Yongkang Yang; Erik I Waldorff; Nianli Zhang; Ingmar Viohl; Sien Lin; Liming Bian; Wayne Yuk-Wai Lee; Gang Li
Journal:  Bioact Mater       Date:  2022-10-12

2.  Pulsed Electromagnetic Fields and Tissue Engineering of the Joints.

Authors:  Kenjiro Iwasa; A Hari Reddi
Journal:  Tissue Eng Part B Rev       Date:  2017-11-17       Impact factor: 6.389

Review 3.  Effects of pulsed electromagnetic field therapy on outcomes associated with osteoarthritis : A systematic review of systematic reviews.

Authors:  Lovro Markovic; Barbara Wagner; Richard Crevenna
Journal:  Wien Klin Wochenschr       Date:  2022-04-01       Impact factor: 2.275

4.  Targeted In Situ Biosynthetic Transcriptional Activation in Native Surface-Level Human Articular Chondrocytes during Lesion Stabilization.

Authors:  Kumkum Ganguly; Ian D McRury; Peter M Goodwin; Roy E Morgan; Wayne K Augé
Journal:  Cartilage       Date:  2012-04       Impact factor: 4.634

5.  Experimentally induced cartilage degeneration treated by pulsed electromagnetic field stimulation; an in vitro study on bovine cartilage.

Authors:  Francesca Veronesi; Milena Fini; Gianluca Giavaresi; Alessia Ongaro; Monica De Mattei; Agnese Pellati; Stefania Setti; Matilde Tschon
Journal:  BMC Musculoskelet Disord       Date:  2015-10-20       Impact factor: 2.362

6.  Efficacy and safety of the pulsed electromagnetic field in osteoarthritis: a meta-analysis.

Authors:  Ziying Wu; Xiang Ding; Yilun Wang; Dongxing Xie; Guanghua Lei; Chao Zeng; Jie Wei; Jiatian Li; Hui Li; Tuo Yang; Yang Cui; Yilin Xiong
Journal:  BMJ Open       Date:  2018-12-14       Impact factor: 2.692

7.  Hydrogel-hydroxyapatite-monomeric collagen type-I scaffold with low-frequency electromagnetic field treatment enhances osteochondral repair in rabbits.

Authors:  Jiyuan Yan; Chaoxu Liu; Chang Tu; Ruizhuo Zhang; Xiangyu Tang; Hao Li; Huaixi Wang; Yongzhuang Ma; Yingchi Zhang; Hua Wu; Gaohong Sheng
Journal:  Stem Cell Res Ther       Date:  2021-11-13       Impact factor: 6.832

  7 in total

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