| Literature DB >> 26331061 |
Min Sung Kim1, Mi Hee Lee2, Byeong-Ju Kwon1, Hyok Jin Seo1, Min-Ah Koo1, Kyung Eun You1, Dohyun Kim2, Jong-Chul Park1.
Abstract
BACKGROUND: Cell migration is an essential activity of the cells in various biological phenomena. The evidence that electrotaxis plays important roles in many physiological phenomena is accumulating. In electrotaxis, cells move with a directional tendency toward the anode or cathode under direct-current electric fields. Indium tin oxide, commonly referred to as ITO has high luminous transmittance, high infrared reflectance, good electrical conductivity, excellent substrate adherence, hardness and chemical inertness and hence, have been widely and intensively studied for many years. Because of these properties of ITO films, the electrotaxis using ITO plate was evaluated.Entities:
Keywords: Breast cancer cell; Cell migration; Electrotaxis; ITO plate; MDA-MB-231
Year: 2014 PMID: 26331061 PMCID: PMC4549139 DOI: 10.1186/2055-7124-18-10
Source DB: PubMed Journal: Biomater Res ISSN: 1226-4601
Figure 1Indium-tin-oxide (ITO) plate electrotaxis system. Indium-tin-oxide (ITO) plate electrotaxis system (A) and Schematic diagram of electrotaxis using ITO plate (B).
Figure 2Real time observation system. Schematic diagram of the real time observation system for the evaluation of cell migration.
Figure 3LIVE/DEAD assay of MDA-MB-231. LIVE/DEAD assay of MDA-MB-231 in an EF of 0 V/cm (A), 1 V/cm (B) and 2 V/cm (C). (Scale bar = 100 μm).
Figure 4Cell tracking image of MDA-MB-231. Cell tracking image of MDA-MB-231 in an EF of 0 V/cm (A), 1 V/cm (B).
Figure 5The y forward migration index of MDA-MB-231. Schematic diagram of the y FMI (A), The y forward migration index of MDA-MB-231 in an EF of 0 V/cm and 1 V/cm (B) (*p < 0.05).
Figure 6The migration speed of MDA-MB-231. The migration speed of MDA-MB-231 in an EF of 0 V/cm and 1 V/cm.