32 Papers
77 Citations
Dan Ge is an academic researcher from Dalian University of Technology. The author has contributed to research in topics: Neural stem cell & Stem cell. The author has an hindex of 13, co-authored 29 publications.
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Papers
Chitosan/gelatin porous scaffolds assembled with conductive poly(3,4-ethylenedioxythiophene) nanoparticles for neural tissue engineering
Shuping Wang,Changkai Sun,Shui Guan,Wenfang Li,Jianqiang Xu,Dan Ge,Meiling Zhuang,Tianqing Liu,Xuehu Ma +8 more
TL;DR: The results suggest that the PEDOT-assembled Cs/Gel scaffold enhanced the PC12 cellular neurite growth with higher protein and gene expression levels, and may be a promising conductive scaffold for neural tissue engineering.
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3D culture of neural stem cells within conductive PEDOT layer-assembled chitosan/gelatin scaffolds for neural tissue engineering.
TL;DR: Results demonstrated that the PEDOT/Cs/Gel scaffolds as an electrically conductive scaffold could not only promote NSCs adhesion and proliferation but also enhance N SCs differentiation into neurons and astrocytes with higher protein and gene expression.
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Neural stem cell proliferation and differentiation in the conductive PEDOT-HA/Cs/Gel scaffold for neural tissue engineering
TL;DR: The results demonstrated that the PEDOT-HA/Cs/Gel scaffold had excellent biocompatibility for NSC proliferation and differentiation and was used as a conductive substrate for neural stem cell (NSC) culture in vitro.
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Protocatechuic acid promotes cell proliferation and reduces basal apoptosis in cultured neural stem cells.
TL;DR: Investigation of the roles of PCA in the survival and apoptosis of rat NSCs under normal conditions and treatment with PCA effectively reduced the levels of apoptosis, suggest that PCA may be a potential growth inducer and apoptotic inhibitor for N SCs.
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Ratiometric fluorescence imaging of lysosomal Zn2+ release under oxidative stress in neural stem cells
Hao Zhu,Jiangli Fan,Shiling Zhang,Jianfang Cao,Kedong Song,Dan Ge,Huijuan Dong,Jingyun Wang,Xiaojun Peng +8 more
TL;DR: Confocal imaging experiments indicate that LysoZn-1 is able to localise to lysosomes in neural stem cells (NSCs), MCF-7 and Hela cells and detect exogenous Zn2+ levels in NSCs and MCf-7 cells.
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