Title of article :
Maskless liquid-crystal-display projection photolithography for improved design flexibility of cellular micropatterns
Author/Authors :
Kazuyoshi Itoga، نويسنده , , Jun Kobayashi، نويسنده , , Masayuki Yamato، نويسنده , , Akihiko Kikuchi، نويسنده , , Teruo Okano، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Pages :
5
From page :
3005
To page :
3009
Abstract :
We previously developed an all-in-one photopolymerization device by modifying a commercially available liquid crystal display projector (LCDP) for the preparation of micropatterned surfaces and microfluidic channels without the need for expensive photomasks. In the present study, we demonstrate a simple and reliable method for rapid prototyping of cell micropatterning with high resolution using the modified LCDP device. Fabrication of complicated and flexible patterns was achieved using this device with positive-type photoresist in a two-step process. First, micropatterns on the silanized coverslips were fabricated from positive photoresist. Second, acrylamide monomer solution containing polymerization initiator was dropped onto the micropatterned positive photoresist and copolymerized on the silanized coverslips in situ by thermally initiated radical polymerization. After the reaction, the remnant micropatterned photoresist is easily dissolved, resulting in a polyacrylamide-silane micropattern on the coverslip. The resultant polyacrylamide layer is highly hydrophilic and repels both protein adsorption and cell adhesion. Cells seeded on the micropatterned surfaces therefore attach and spread only on unpolymerized silanized glass surfaces, conforming to the pattern design. This technique is therefore useful for inexpensive, rapid prototyping of surface micropatterns using polymer materials.
Keywords :
Liquid crystal display projector , Maskless , Cell micropatterning , Photolithography , Polyacrylamide , photoresist
Journal title :
Biomaterials
Serial Year :
2006
Journal title :
Biomaterials
Record number :
546952
Link To Document :
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