4.4 Article

A fast flexible ink-jet printing method for patterning dissociated neurons in culture

期刊

JOURNAL OF NEUROSCIENCE METHODS
卷 136, 期 2, 页码 151-163

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jneumeth.2004.01.011

关键词

patterned neural networks; ink-jet printing; surface chemistry; cell attachment; cell growth control; dissociated cell culture; glia patterning; hippocampus

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We present a new technique that uses a custom-built ink-jet printer to fabricate precise micropatterns of cell adhesion materials for neural cell culture. Other work in neural cell patterning has employed photolithography or soft lithographic techniques such as micro-stamping, but such approaches are limited by their use of an un-alterable master pattern such as a mask or stamp master and can be resource-intensive. In contrast, ink-jet printing, used in low-cost desktop printers, patterns material by depositing microscopic droplets under robotic control in a programmable and inexpensive manner. We report the use of ink-jet printing to fabricate neuron-adhesive patterns such as islands and other shapes using poly(ethylene) glycol as the cell-repulsive material and a collagen/poly-D-lysine (PDL) mixture as the cell-adhesive material. We show that dissociated rat hippocampal neurons and glia grown at low densities on such patterns retain strong pattern adherence for over 25 days. The patterned neurons are comparable to control, un-patterned cells in electrophysiological properties and in immunocytochemical measurements of synaptic density and inhibitory cell distributions. We suggest that an inexpensive desktop printer may be an accessible tool for making micro-island cultures and other basic patterns. We also suggest that ink-jet printing may be extended to a range of developmental neuroscience studies, given its ability to more easily layer materials, build substrate-bound gradients, construct out-of-plane structure, and deposit sources of diffusible factors. (C) 2004 Elsevier B.V. All rights reserved.

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