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PMID: 10395390 Published · ppublish English

Biological surface engineering: a simple system for cell pattern formation.

Biomaterials ·Vol. 20 ·No. 13 ·1999-09-16

Zhang S, Yan L, Altman M, Lässle M, Nugent H, Frankel F, Lauffenburger D A, Whitesides G M, Rich A

Abstract

Biological surface engineering using synthetic biological materials has a great potential for advances in our understanding of complex biological phenomena. We developed a simple system to engineer biologically relevant surfaces using a combination of self-assembling oligopeptide monolayers and microcontact printing (muCP). We designed and synthesized two oligopeptides containing a cell adhesion motif (RADS)n (n = 2 and 3) at the N-terminus, followed by an oligo(alanine) linker and a cysteine residue at the C-terminus. The thiol group of cysteine allows the oligopeptides to attach covalently onto a gold-coated surface to form monolayers. We then microfabricated a variety of surface patterns using the cell adhesion peptides in combination with hexa-ethylene glycol thiolate which resist non-specific adsorption of proteins and cells. The resulting patterns consist of areas either supporting or inhibiting cell adhesion, thus they are capable of aligning cells in a well-defined manner, leading to specific cell array and pattern formations.

Keywords
Non-programmatic
Article Info
Journal
Biomaterials
Abbr.
Biomaterials
Published
1999-09-16
Indexed
1999-09-16
Updated
2006-11-15
Language
English
Country/Region
Netherlands
NLM ID
8100316
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