Literature DB >> 18278968

Synergistic microfluidic and electrochemical strategy to activate and pattern surfaces selectively with ligands and cells.

Nathan P Westcott1, Muhammad N Yousaf.   

Abstract

We show a straightforward, flexible synergistic approach that combines microfluidics, electrochemistry, and a general immobilization strategy to activate regions of a substrate selectively for the precise immobilization of ligands and cells in patterns for a variety of cell-based assays and cell migration and cell adhesion studies. We develop microfluidic microchips to control the delivery of electrolyte solution to select regions of an electroactive hydroquinone SAM. Once an electrical potential is applied to the substrate, only the hydroquinone exposed to electrolyte solution within the microfluidic channels oxidizes to the corresponding quinone. The quinone form can then react chemoselectively with oxyamine-tethered ligands to pattern the surface. Therefore, this microfluidic/electrochemistry strategy selectively activates the surface for ligand patterning that exactly matches the channel design of the microfluidic channel. We demonstrate the ease of this system by first quantitatively characterizing the electrochemical activation and immobilization of ligands on the surface. Second, we immobilize a fluorescent dye to show the fidelity of the methodology, and third, we show the immobilization of biospecific cell adhesive peptide ligands to pattern cells. This is the first report that combines microfluidics/electrochemistry and a general electroactive immobilization strategy to pattern ligands and cells. We believe that this strategy will be of broad utility for applications ranging from fundamental studies of cell behavior to patterning molecules on a variety of materials for molecular electronic devices.

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Year:  2008        PMID: 18278968     DOI: 10.1021/la703744v

Source DB:  PubMed          Journal:  Langmuir        ISSN: 0743-7463            Impact factor:   3.882


  5 in total

Review 1.  Patterned self-assembled monolayers: efficient, chemically defined tools for cell biology.

Authors:  Justin T Koepsel; William L Murphy
Journal:  Chembiochem       Date:  2012-07-17       Impact factor: 3.164

2.  Protein and cell patterning in closed polymer channels by photoimmobilizing proteins on photografted poly(ethylene glycol) diacrylate.

Authors:  Esben Kjær Unmack Larsen; Morten Bo Lindholm Mikkelsen; Niels B Larsen
Journal:  Biomicrofluidics       Date:  2014-12-30       Impact factor: 2.800

3.  Redox-activating dip-pen nanolithography (RA-DPN).

Authors:  Adam B Braunschweig; Andrew J Senesi; Chad A Mirkin
Journal:  J Am Chem Soc       Date:  2009-01-28       Impact factor: 15.419

4.  Multifunctional surfaces with discrete functionalized regions for biological applications.

Authors:  Moniraj Ghosh; Christina Alves; Ziqiu Tong; Kwadwo Tettey; Konstantinos Konstantopoulos; Kathleen J Stebe
Journal:  Langmuir       Date:  2008-06-27       Impact factor: 3.882

5.  A molecular smart surface for spatio-temporal studies of cell mobility.

Authors:  Eun-ju Lee; Wei Luo; Eugene W L Chan; Muhammad N Yousaf
Journal:  PLoS One       Date:  2015-06-01       Impact factor: 3.240

  5 in total

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