Literature DB >> 23239875

Electromagnetic fields enhance chondrogenesis of human adipose-derived stem cells in a chondrogenic microenvironment in vitro.

Chung-Hwan Chen1, Yi-Shan Lin, Yin-Chih Fu, Chih-Kuang Wang, Shun-Cheng Wu, Gwo-Jaw Wang, Rajalakshmanan Eswaramoorthy, Yan-Hsiung Wang, Chau-Zen Wang, Yao-Hsien Wang, Sung-Yen Lin, Je-Ken Chang, Mei-Ling Ho.   

Abstract

We tested the hypothesis that electromagnetic field (EMF) stimulation enhances chondrogenesis in human adipose-derived stem cells (ADSCs) in a chondrogenic microenvironment. A two-dimensional hyaluronan (HA)-coated well (2D-HA) and a three-dimensional pellet culture system (3D-pellet) were used as chondrogenic microenvironments. The ADSCs were cultured in 2D-HA or 3D-pellet, and then treated with clinical-use pulse electromagnetic field (PEMF) or the innovative single-pulse electromagnetic field (SPEMF) stimulation. The cytotoxicity, cell viability, and chondrogenic and osteogenic differentiations were analyzed after PEMF or SPEMF treatment. The modules of PEMF and SPEMF stimulations used in this study did not cause cytotoxicity or alter cell viability in ADSCs. Both PEMF and SPEMF enhanced the chondrogenic gene expression (SOX-9, collagen type II, and aggrecan) of ADSCs cultured in 2D-HA and 3D-pellet. The expressions of bone matrix genes (osteocalcin and collagen type I) of ADSCs were not changed after SPEMF treatment in 2D-HA and 3D-pellet; however, they were enhanced by PEMF treatment. Both PEMF and SPEMF increased the cartilaginous matrix (sulfated glycosaminoglycan) deposition of ADSCs. However, PEMF treatment also increased mineralization of ADSCs, but SPEMF treatment did not. Both PEMF and SPEMF enhanced chondrogenic differentiation of ADSCs cultured in a chondrogenic microenvironment. SPEMF treatment enhanced ADSC chondrogenesis, but not osteogenesis, when the cells were cultured in a chondrogenic microenvironment. However, PEMF enhanced both osteogenesis and chondrogenesis under the same conditions. Thus the combination of a chondrogenic microenvironment with SPEMF stimulation can promote chondrogenic differentiation of ADSCs and may be applicable to articular cartilage tissue engineering.

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Year:  2012        PMID: 23239875     DOI: 10.1152/japplphysiol.01216.2012

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  17 in total

1.  Physical Stimulations for Bone and Cartilage Regeneration.

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Journal:  Regen Eng Transl Med       Date:  2018-06-25

2.  Magnetic field application or mechanical stimulation via magnetic microparticles does not enhance chondrogenesis in mesenchymal stem cell sheets.

Authors:  A D Dikina; B P Lai; M Cao; M Zborowski; E Alsberg
Journal:  Biomater Sci       Date:  2017-06-27       Impact factor: 6.843

3.  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

4.  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 5.  The effect of low-frequency electromagnetic field on human bone marrow stem/progenitor cell differentiation.

Authors:  Christina L Ross; Mevan Siriwardane; Graça Almeida-Porada; Christopher D Porada; Peter Brink; George J Christ; Benjamin S Harrison
Journal:  Stem Cell Res       Date:  2015-05-12       Impact factor: 2.020

Review 6.  Impact of electromagnetic fields on stem cells: common mechanisms at the crossroad between adult neurogenesis and osteogenesis.

Authors:  Lucia Leone; Maria Vittoria Podda; Claudio Grassi
Journal:  Front Cell Neurosci       Date:  2015-06-15       Impact factor: 5.505

Review 7.  How electromagnetic fields can influence adult stem cells: positive and negative impacts.

Authors:  Aleksandra Maziarz; Beata Kocan; Mariusz Bester; Sylwia Budzik; Marian Cholewa; Takahiro Ochiya; Agnieszka Banas
Journal:  Stem Cell Res Ther       Date:  2016-04-18       Impact factor: 6.832

Review 8.  Adipose-Derived Stem Cells for Tissue Engineering and Regenerative Medicine Applications.

Authors:  Ru Dai; Zongjie Wang; Roya Samanipour; Kyo-In Koo; Keekyoung Kim
Journal:  Stem Cells Int       Date:  2016-02-21       Impact factor: 5.443

9.  Simvastatin Enhances the Chondrogenesis But Not the Osteogenesis of Adipose-Derived Stem Cells in a Hyaluronan Microenvironment.

Authors:  Shun-Cheng Wu; Chih-Hsiang Chang; Ling-Hua Chang; Che-Wei Wu; Jhen-Wei Chen; Chung-Hwan Chen; Yi-Shan Lin; Je-Ken Chang; Mei-Ling Ho
Journal:  Biomedicines       Date:  2021-05-17

Review 10.  Life rhythm as a symphony of oscillatory patterns: electromagnetic energy and sound vibration modulates gene expression for biological signaling and healing.

Authors:  David Muehsam; Carlo Ventura
Journal:  Glob Adv Health Med       Date:  2014-03
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