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Department of Brain Sciences
Laboratory of Chemical Senses
1. Journal Articles
Nano-patterned SU-8 surface using nanosphere-lithography for enhanced neuronal cell growth
Kim, Eunhee
;
Yoo, Seung-Jun
;
Kim, Eunjung
;
Kwon, Tae-Hwan
;
Zhang, Li
;
Moon, Cheil
;
Choi, Hongsoo
Department of Brain Sciences
Laboratory of Chemical Senses
1. Journal Articles
Department of Robotics and Mechatronics Engineering
Bio-Micro Robotics Lab
1. Journal Articles
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Title
Nano-patterned SU-8 surface using nanosphere-lithography for enhanced neuronal cell growth
DGIST Authors
Kim, Eunhee
;
Yoo, Seung-Jun
;
Kim, Eunjung
;
Kwon, Tae-Hwan
;
Zhang, Li
;
Moon, Cheil
;
Choi, Hongsoo
Issued Date
2016-04
Citation
Kim, Eunhee. (2016-04). Nano-patterned SU-8 surface using nanosphere-lithography for enhanced neuronal cell growth. doi: 10.1088/0957-4484/27/17/175303
Type
Article
Article Type
Article
Author Keywords
nano-patterned
;
nanosphere lithography
;
neurite outgrowth
;
surface modification
Keywords
CIRCULATING TUMOR-CELLS
;
Cytology
;
DIFFERENTIATION
;
emBRYONIC STem-CELLS
;
Extracellular Matrices
;
HIPPOCAMPAL-NEURONS
;
Implants (Surgical)
;
IN-VITRO
;
Lithography
;
Microelectrodes
;
Nano-Patterned
;
Nano-Scale Surfaces
;
Nano Sphere Lithography
;
Nanosphere Lithography
;
Nanospheres
;
Neurite Outgrowth
;
Neurite Outgrowth
;
Neurite Outgrowth
;
Neuronal Development
;
Neurons
;
Plastic Coatings
;
Polystyrene Nanoparticles
;
Surface Modification
;
Surface Treatment
;
TISSUES
;
Adhesion
;
Amino ACIDs
;
Biocompatibility
;
Cell Culture
;
Cell Culture Mediums
;
CELLS
ISSN
0957-4484
Abstract
Mimicking the nanoscale surface texture of the extracellular matrix can affect the regulation of cellular behavior, including adhesion, differentiation, and neurite outgrowth. In this study, SU-8-based polymer surfaces with well-ordered nanowell arrays were fabricated using nanosphere lithography with polystyrene nanoparticles. We show that the SU-8 surface with nanowells resulted in similar neuronal development of rat pheochromocytoma (PC12) cells compared with an unpatterned poly-L-lysine (PLL)-coated SU-8 surface. Additionally, even after soaking the substrate in cell culture medium for two weeks, cells on the nanowell SU-8 surface showed long-term neurite outgrowth compared to cells on the PLL-coated SU-8 surface. The topographical surface modification of the nanowell array demonstrates potential as a replacement for cell adhesive material coatings such as PLL, for applications requiring long-term use of polymer-based implantable devices. © 2016 IOP Publishing Ltd.
URI
http://hdl.handle.net/20.500.11750/1643
DOI
10.1088/0957-4484/27/17/175303
Publisher
Institute of Physics Publishing
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