In situ synthesis of DNA microarray on functionalized cyclic olefin copolymer substrate.

dc.contributor.author

Saaem, I

dc.contributor.author

Ma, K

dc.contributor.author

Marchi, A

dc.contributor.author

LaBean, T

dc.contributor.author

Tian, J

dc.coverage.spatial

United States

dc.date.accessioned

2011-06-21T17:22:08Z

dc.date.issued

2010-02

dc.description.abstract

Thermoplastic materials such as cyclic-olefin copolymers (COC) provide a versatile and cost-effective alternative to the traditional glass or silicon substrate for rapid prototyping and industrial scale fabrication of microdevices. To extend the utility of COC as an effective microarray substrate, we developed a new method that enabled for the first time in situ synthesis of DNA oligonucleotide microarrays on the COC substrate. To achieve high-quality DNA synthesis, a SiO(2) thin film array was prepatterned on the inert and hydrophobic COC surface using RF sputtering technique. The subsequent in situ DNA synthesis was confined to the surface of the prepatterned hydrophilic SiO(2) thin film features by precision delivery of the phosphoramidite chemistry using an inkjet DNA synthesizer. The in situ SiO(2)-COC DNA microarray demonstrated superior quality and stability in hybridization assays and thermal cycling reactions. Furthermore, we demonstrate that pools of high-quality mixed-oligos could be cleaved off the SiO(2)-COC microarrays and used directly for construction of DNA origami nanostructures. It is believed that this method will not only enable synthesis of high-quality and low-cost COC DNA microarrays but also provide a basis for further development of integrated microfluidics microarrays for a broad range of bioanalytical and biofabrication applications.

dc.description.version

Version of Record

dc.identifier

http://www.ncbi.nlm.nih.gov/pubmed/20356196

dc.identifier.issn

1944-8244

dc.identifier.uri

https://hdl.handle.net/10161/4000

dc.language

eng

dc.language.iso

en_US

dc.publisher

American Chemical Society (ACS)

dc.relation.ispartof

ACS Appl Mater Interfaces

dc.relation.isversionof

10.1021/am900884b

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Acs Applied Materials & Interfaces

dc.subject

Cycloparaffins

dc.subject

DNA

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Equipment Design

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Equipment Failure Analysis

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Membranes, Artificial

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Oligonucleotide Array Sequence Analysis

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Polymers

dc.title

In situ synthesis of DNA microarray on functionalized cyclic olefin copolymer substrate.

dc.title.alternative
dc.type

Journal article

duke.date.pubdate

2010-2-0

duke.description.issue

2

duke.description.volume

2

pubs.author-url

http://www.ncbi.nlm.nih.gov/pubmed/20356196

pubs.begin-page

491

pubs.end-page

497

pubs.issue

2

pubs.organisational-group

Duke

pubs.organisational-group

Faculty

pubs.publication-status

Published

pubs.volume

2

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