Back to Search Start Over

Adhesion and growth of electrically active cortical neurons on polyethylenimine patterns microprinted onto PEO-PPO-PEO triblockcopolymer-coated hydrophobic surfaces.

Authors :
Ruardij, T.G.
van den Boogaart, M.A.F.
Rutten, W.L.C.
Source :
IEEE Transactions on NanoBioscience; Mar2002, Vol. 1 Issue 1, p4-11, 8p
Publication Year :
2002

Abstract

This paper describes the adhesion and growth of dissociated cortical neurons on chemically patterned surfaces over a time period of 30 days. The presence of neurons was demonstrated by measurement of spontaneous bioelectrical activity on a micropatterned multielectrode array. Chemical patterns were prepared with a combination of neurophobic layers of polyethylenoxide-polypropylenoxide-polyethylenoxide (PEO-PPO-PEO) triblockcopolymers adsorbed onto hydrophobic surfaces and neurophilic microprinted tracks of polyethylenimine (PEI). Results showed that commercially available PEO-PPO-PEO triblockcopolymers F108 and F127 (Synperonics, ICI) significantly reduced the adhesion of neuronal tissue when adsorbed on hydrophobic Polyimide (PI) and Fluorocarbon (FC) surfaces over a time period of eight days. In general, both F108- and F127-coated PI displayed equal or better neurophobic background properties after 30 days. Viability of neuronal tissue after 30 days on PEI microprinted F108- and F127-coated PI was comparable with relatively high viability factors between 0.9 and 1 (scale from 0 to 1). Summarizing, the strategy to combine the neurophobic adsorbed triblock-copolymers F108 and F127 onto hydrophobic surfaces with neurophilic microprinted PEI resulted in relatively long-term neuronal pattern preservation with high numbers of viable neurons present after 30 days. [ABSTRACT FROM PUBLISHER]

Details

Language :
English
ISSN :
15361241
Volume :
1
Issue :
1
Database :
Complementary Index
Journal :
IEEE Transactions on NanoBioscience
Publication Type :
Academic Journal
Accession number :
52156314
Full Text :
https://doi.org/10.1109/TNB.2002.806921