Literature DB >> 20463384

Directional neurite growth using carbon nanotube patterned substrates as a biomimetic cue.

Min Jee Jang1, Seon Namgung, Seunghun Hong, Yoonkey Nam.   

Abstract

Researchers have made extensive efforts to mimic or reverse-engineer in vivo neural circuits using micropatterning technology. Various surface chemical cues or topographical structures have been proposed to design neuronal networks in vitro. In this paper, we propose a carbon nanotube (CNT)-based network engineering method which naturally mimics the structure of extracellular matrix (ECM). On CNT patterned substrates, poly-L-lysine (PLL) was coated, and E18 rat hippocampal neurons were cultured. In the early developmental stage, soma adhesion and neurite extension occurred in disregard of the surface CNT patterns. However, later the majority of neurites selectively grew along CNT patterns and extended further than other neurites that originally did not follow the patterns. Long-term cultured neuronal networks had a strong resemblance to the in vivo neural circuit structures. The selective guidance is possibly attributed to higher PLL adsorption on CNT patterns and the nanomesh structure of the CNT patterns. The results showed that CNT patterned substrates can be used as novel neuronal patterning substrates for in vitro neural engineering.

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Year:  2010        PMID: 20463384     DOI: 10.1088/0957-4484/21/23/235102

Source DB:  PubMed          Journal:  Nanotechnology        ISSN: 0957-4484            Impact factor:   3.874


  3 in total

Review 1.  Recent advances in nanotherapeutic strategies for spinal cord injury repair.

Authors:  Young Hye Song; Nikunj K Agrawal; Jonathan M Griffin; Christine E Schmidt
Journal:  Adv Drug Deliv Rev       Date:  2018-12-22       Impact factor: 15.470

2.  Control of neuronal network organization by chemical surface functionalization of multi-walled carbon nanotube arrays.

Authors:  Jie Liu; Florence Appaix; Olivier Bibari; Gilles Marchand; Alim-Louis Benabid; Fabien Sauter-Starace; Michel De Waard
Journal:  Nanotechnology       Date:  2011-03-24       Impact factor: 3.874

3.  Scale of Carbon Nanomaterials Affects Neural Outgrowth and Adhesion.

Authors:  Eric Franca; Pit Fee Jao; Sheng-Po Fang; Sankaraleengam Alagapan; Liangbin Pan; Jung Hae Yoon; Yong-Kyu Yoon; Bruce C Wheeler
Journal:  IEEE Trans Nanobioscience       Date:  2016-01-25       Impact factor: 2.935

  3 in total

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