Integrated microelectrode array and microfluidics for temperature clamp of sensory neurons in culture.
basic_science · Level V
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Abstract
A device for cell culture is presented that combines MEMS technology and liquid-phase photolithography to create a microfluidic chip that influences and records electrical cellular activity. A photopolymer channel network is formed on top of a multichannel microelectrode array. Preliminary results indicated successful local thermal control within microfluidic channels and control of lamina position over the electrode array. To demonstrate the biological application of such a device, adult dissociated dorsal root ganglion neurons with a subpopulation of thermally-sensitive cells are attached onto the electrode array. Using laminar flow, dynamic control of local temperature of the neural cells was achieved while maintaining a constant chemical culture medium. Recording the expected altered cellular activity confirms the success of the integrated device.
Medical subject headings
- Ganglia, Spinal
- Microelectrodes
- Microfluidic Analytical Techniques
- Neurons, Afferent
- Temperature