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Self-aligned supported lipid bilayers for patterning the cell-substrate interface.


ABSTRACT: Supported lipid bilayers capture the fluidity and chemical properties of cellular membranes. In this report, we introduce a method for creating surfaces that contain multiple, aligned regions of supported membranes of different compositions at scales of micrometers and smaller. This method uses the design of a diffusional barrier to increase the resolution that can be achieved directly using traditional bilayer patterning techniques, such as laminar flow. We demonstrate the use of this platform for presenting ligands to the T Cell Receptor and LFA-1 that are tethered to separate, closely juxtaposed regions of bilayer, capturing an important aspect of the natural organization observed between T cells and Antigen Presenting Cells. Our results present a novel platform for the study of spatial separation of extracellular ligands and its impact on cell signals.

SUBMITTER: Shen K 

PROVIDER: S-EPMC2756520 | biostudies-literature | 2009 Sep

REPOSITORIES: biostudies-literature

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Self-aligned supported lipid bilayers for patterning the cell-substrate interface.

Shen Keyue K   Tsai Jones J   Shi Peng P   Kam Lance C LC  

Journal of the American Chemical Society 20090901 37


Supported lipid bilayers capture the fluidity and chemical properties of cellular membranes. In this report, we introduce a method for creating surfaces that contain multiple, aligned regions of supported membranes of different compositions at scales of micrometers and smaller. This method uses the design of a diffusional barrier to increase the resolution that can be achieved directly using traditional bilayer patterning techniques, such as laminar flow. We demonstrate the use of this platform  ...[more]

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