DocumentCode :
1939089
Title :
A Novel Electrical Field Bioreactor for Wound Healing Study
Author :
Yang, Gang ; Long, Haiyan ; Wu, Jiang ; Huang, Hua
Author_Institution :
Med. Inf. Eng. Fac. of Electr. Coll., Sichuan Univ., Chengdu
Volume :
2
fYear :
2008
fDate :
27-30 May 2008
Firstpage :
548
Lastpage :
552
Abstract :
Wound healing is essential for maintaining the integrity of multicellular organisms. The disruption of an epithelial layer instantaneously generates endogenous electric fields, which play a key role in wound healing. In vitro, a variety of cells respond to DC electric fields of physiological strength by directional movement. Such experiments involve culturing cells in specially designed galvanotaxis chambers connected to a DC power supply. In this article, we introduce a novel electrical field bioreactor with a specially designed galvanotaxis chamber. The EFs in galvanotaxis chamber are uniform parallel field and the current density distribution are demonstrated by ANSYS 10.0 electrical field simulation software. For testifying the function of the novel galvanotaxis bioreactor, we cultured Hy 92 6 cells for 12 hours under a online time-lapse microscope. Cells migration tracks are recorded and handled by Image-pro plus5.0 analysis software. The experiment results show Hy926 cells have obvious directional migration to the cathode.
Keywords :
bioelectric phenomena; biological effects of fields; bioreactors; cellular biophysics; patient treatment; ANSYS 10.0; DC electric fields; Hy926 cells; Image-pro plus5.0 analysis software; cell migration tracks; cellular directional movement; current density distribution; electrical field bioreactor; electrical field simulation software; endogenous electric fields; epithelial layer disruption; galvanotaxis chambers; multicellular organism integrity; parallel electric field; wound healing; Bioreactors; Cells (biology); Current density; Image analysis; In vitro; Microscopy; Organisms; Power supplies; Testing; Wounds; bioreactor; cells migration; electric field; galvanotaxis; wound healing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
BioMedical Engineering and Informatics, 2008. BMEI 2008. International Conference on
Conference_Location :
Sanya
Print_ISBN :
978-0-7695-3118-2
Type :
conf
DOI :
10.1109/BMEI.2008.130
Filename :
4549234
Link To Document :
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