Micropatterning Neuronal Cells on Polyelectrolyte Multilayers
- 31 August 2004
- journal article
- Published by American Chemical Society (ACS) in Langmuir
- Vol. 20 (20) , 8805-8811
- https://doi.org/10.1021/la049249a
Abstract
This paper describes an approach to adhere retinal cells on micropatterned polyelectrolyte multilayer (PEM) lines adsorbed on poly(dimethylsiloxane) (PDMS) surfaces using microfluidic networks. PEMs were patterned on flat, oxidized PDMS surfaces by sequentially flowing polyions through a microchannel network that was placed in contact with the PDMS surface. Polyethyleneimine (PEI) and poly(allylamine hydrochloride) (PAH) were the polyions used as the top layer cellular adhesion material. The microfluidic network was lifted off after the patterning was completed and retinal cells were seeded on the PEM/PDMS surfaces. The traditional practice of using blocking agents to prevent the adhesion of cells on unpatterned areas was avoided by allowing the PDMS surface to return to its uncharged state after the patterning was completed. The adhesion of rat retinal cells on the patterned PEMs was observed 5 h after seeding. Cell viability and morphology on the patterned PEMs were assayed. These materials proved to be nontoxic to the cells used in this study regardless of the number of stacked PEM layers. Phalloidin staining of the cytoskeleton revealed no apparent morphological differences in retinal cells compared with those plated on polystyrene or the larger regions of PEI and PAH; however, cells were relatively more elongated when cultured on the PEM lines. Cell-to-cell communication between cells on adjacent PEM lines was observed as interconnecting tubes containing actin that were a few hundred nanometers in diameter and up to 55 microm in length. This approach provides a simple, fast, and inexpensive method of patterning cells onto micrometer-scale features.Keywords
This publication has 21 references indexed in Scilit:
- Nanotubular Highways for Intercellular Organelle TransportScience, 2004
- Multilayer Line Micropatterning Using Convective Self-Assembly in Microfluidic ChannelsLangmuir, 2003
- Atomic Force Microscopy Studies of Salt Effects on Polyelectrolyte Multilayer Film MorphologyLangmuir, 2001
- Patterning Mammalian Cells Using Elastomeric MembranesLangmuir, 2000
- Pleated Sheets and Turns ofβ-Peptides with Proteinogenic Side ChainsAngewandte Chemie International Edition in English, 1999
- Chemical Amplification in High-Resolution Imaging SystemsAccounts of Chemical Research, 1994
- Tissue EngineeringScience, 1993
- Coplanar molecular assemblies of amino- and perfluorinated alkylsilanes: characterization and geometric definition of mammalian cell adhesion and growthJournal of the American Chemical Society, 1992
- Stimulation of clonal growth of normal fibroblasts with substrata coated with basic polymers.The Journal of cell biology, 1976
- ATTACHMENT AND CULTURE OF DISSOCIATED CELLS FROM RAT EMBRYO CEREBRAL HEMISPHERES ON POLYLYSINE-COATED SURFACEThe Journal of cell biology, 1974