Literature DB >> 21975226

Biosensor microprobes with integrated microfluidic channels for bi-directional neurochemical interaction.

O Frey1, P D van der Wal, S Spieth, O Brett, K Seidl, O Paul, P Ruther, R Zengerle, N F de Rooij.   

Abstract

This paper reports on silicon-based microprobes, 8 mm long and 250 µm × 250 µm cross-section, comprising four recessed biosensor microelectrodes (50 µm × 150 µm) per probe shank coated with an enzymatic layer for the selective detection of choline at multiple sites in brain tissue. Integrated in the same probe shank are up to two microfluidic channels for controlled local liquid delivery at a defined distance from the biosensor microelectrodes. State-of-the-art silicon micromachining processing was applied for reproducible fabrication of these experiment-tailored multi-functional probe arrays. Reliable electric and fluidic interconnections to the microprobes are guaranteed by a custom-made holder. The reversible packaging method implemented in this holder significantly reduces cost and assembly time and simplifies storage of the biosensor probes between consecutive experiments. The functionalization of the electrodes is carried out using electrochemically aided adsorption. This spatially controlled deposition technique enables a parallel deposition of membranes and is especially useful when working with microelectrode arrays. The achieved biosensors show adequate characteristics to detect choline in physiologically relevant concentrations at sufficient temporal and spatial resolution for brain research. Sensitivity to choline better than 10 pA µm(-1), detection limit below 1 µM and response time of 2 s were obtained. The proposed combination of biosensors and microfluidic injectors on the same microprobe allows simultaneous chemical stimulation and recording as demonstrated in an agarose gel-based brain phantom.

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Year:  2011        PMID: 21975226     DOI: 10.1088/1741-2560/8/6/066001

Source DB:  PubMed          Journal:  J Neural Eng        ISSN: 1741-2552            Impact factor:   5.379


  5 in total

1.  Microfabricated polymer-based neural interface for electrical stimulation/recording, drug delivery, and chemical sensing--development.

Authors:  Angela Tooker; Teresa E Madsen; Allison Yorita; Andrea Crowell; Kedar G Shah; Sarah Felix; Helen S Mayberg; Satinderpall Pannu; Donald G Rainnie; Vanessa Tolosa
Journal:  Conf Proc IEEE Eng Med Biol Soc       Date:  2013

Review 2.  Semi-Implantable Bioelectronics.

Authors:  Jiaru Fang; Shuang Huang; Fanmao Liu; Gen He; Xiangling Li; Xinshuo Huang; Hui-Jiuan Chen; Xi Xie
Journal:  Nanomicro Lett       Date:  2022-05-28

3.  Electrochemical sensing via selective surface modification of iridium microelectrodes to create a platinum black interface.

Authors:  Paras R Patel; Matthew D Gibson; Kip A Ludwig; Nicholas B Langhals
Journal:  Int IEEE EMBS Conf Neural Eng       Date:  2013

4.  Investigation of a new electrode array technology for a central auditory prosthesis.

Authors:  Roger Calixto; Behrouz Salamat; Thilo Rode; Tanja Hartmann; Bart Volckaerts; Patrick Ruther; Thomas Lenarz; Hubert H Lim
Journal:  PLoS One       Date:  2013-12-02       Impact factor: 3.240

5.  In Vivo Neural Recording and Electrochemical Performance of Microelectrode Arrays Modified by Rough-Surfaced AuPt Alloy Nanoparticles with Nanoporosity.

Authors:  Zongya Zhao; Ruxue Gong; Liang Zheng; Jue Wang
Journal:  Sensors (Basel)       Date:  2016-11-03       Impact factor: 3.576

  5 in total

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