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PMID: 17165804 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Lipid bilayer formation by contacting monolayers in a microfluidic device for membrane protein analysis.

Analytical chemistry ·Vol. 78 ·No. 24 ·2006-12-15 ·Pages 8169-74

Funakoshi K, Suzuki H, Takeuchi S

Abstract

Artificial planar lipid bilayers are a powerful tool for the functional study of membrane proteins, yet they have not been widely used due to their low stability and reproducibility. This paper describes an accessible method to form a planar lipid bilayer, simply by contacting two monolayers assembled at the interface between water and organic solvent in a microfluidic chip. The membrane of an organic solvent containing phospholipids at the interface was confirmed to be a bilayer by the capacitance measurement and by measuring the ion channel signal from reconstituted antibiotic peptides. We present two different designs for bilayer formation. One equips two circular wells connected, in which the water/solvent/water interface was formed by simply injecting a water droplet into each well. Another equips the cross-shaped microfluidic channel. In the latter design, formation of the interface at the sectional area was controlled by external syringe pumps. Both methods are extremely simple and reproducible, especially in microdevices, and will lead to automation and multiple bilayer formation for the high-throughput screening of membrane transport in physiological and pharmaceutical studies.

MeSH Terms
Automation Biosensing Techniques Electrochemistry Ion Channels/analysis,physiology Lipid Bilayers/chemistry Membrane Proteins/analysis,physiology Membranes, Artificial Microfluidic Analytical Techniques/instrumentation,methods Organic Chemicals/chemistry Solvents/chemistry Water/chemistry
Chemicals
Ion Channels Lipid Bilayers Membrane Proteins Membranes, Artificial Organic Chemicals Solvents Water
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Funakoshi Kei
Center for International Research on Micromechatronics (CIRMM), Institute of Industrial Science (IIS), The University of Tokyo, 4-6-1 Komaba, Tokyo 153-8505, Japan.
Suzuki Hiroaki
Takeuchi Shoji
Article Info
Journal
Analytical chemistry
Abbr.
Anal Chem
ISSN
0003-2700
Published
2006-12-15
Pages
8169-74
Language
English
Region
United States
NLM ID
0370536
Subset
IM
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