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  3. 15 LIFE ON LAND
Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/20792
Title: Pulsed DC Electric Field-Induced Differentiation of Cortical Neural Precursor Cells
Authors: Chang, Hui-Fang
Lee, Ying-Shan
Tang, Tang K.
Cheng, Ji-Yen
Keywords: NEURITE GROWTH;STEM-CELLS;PROGENITOR CELLS;RETINOIC ACID;CHICK-EMBRYO;SPINAL-CORD;IN-VIVO;SOX2;MIGRATION;NEURONS
Issue Date: 28-Jun-2016
Publisher: PUBLIC LIBRARY SCIENCE
Journal Volume: 11
Journal Issue: 6
Source: PLOS ONE
Abstract: 
We report the differentiation of neural stem and progenitor cells solely induced by direct current (DC) pulses stimulation. Neural stem and progenitor cells in the adult mammalian brain are promising candidates for the development of therapeutic neuroregeneration strategies. The differentiation of neural stem and progenitor cells depends on various in vivo environmental factors, such as nerve growth factor and endogenous EF. In this study, we demonstrated that the morphologic and phenotypic changes of mouse neural stem and progenitor cells (mNPCs) could be induced solely by exposure to square-wave DC pulses (magnitude 300 mV/mm at frequency of 100-Hz). The DC pulse stimulation was conducted for 48 h, and the morphologic changes of mNPCs were monitored continuously. The length of primary processes and the amount of branching significantly increased after stimulation by DC pulses for 48 h. After DC pulse treatment, the mNPCs differentiated into neurons, astrocytes, and oligodendrocytes simultaneously in stem cell maintenance medium. Our results suggest that simple DC pulse treatment could control the fate of NPCs. With further studies, DC pulses may be applied to manipulate NPC differentiation and may be used for the development of therapeutic strategies that employ NPCs to treat nervous system disorders.
URI: http://scholars.ntou.edu.tw/handle/123456789/20792
ISSN: 1932-6203
DOI: 10.1371/journal.pone.0158133
Appears in Collections:15 LIFE ON LAND

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