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Biomolecule Arrays Using Functional Combinatorial Particle Patterning on Microchips

delete2012-04-05
delete15
PRE
AI
F
Felix F. Loeffler *
C
Christopher Schirwitz
J
Jenny Wagner
K
K.‐H. KOENIG
F
Frieder Maerkle
G
Gloria Torralba
M
Michael Hausmann
F
F. Ralf Bischoff
A
Alexander Nesterov‐Mueller
F
Frank Breitling
DOI:10.1002/adfm.201103103delete
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Abstract

Abstract

En 中文
Biofunctionalization of surfaces in a microarray format has revolutionized biological assay applications. Here, a microarray system based on a microelectronic chip is presented that allows for a versatile combinatorial in situ molecule synthesis with very high density. Successfully demonstrating an application for peptide array synthesis, the method offers a compact approach, high combinatorial freedom, and, due to the intrinsic alignment, high and reproducible precision. Patterning the chip surface with different microparticle types which imbed different monomers, several thousand different molecule types can be simultaneously elongated layer-by-layer by coupling the particle imbedded monomers to the molecules growing on the chip surface. This technique has the potential for a wide application in combinatorial chemistry, as long as the desired monomeric building blocks are compatible with the chemical process.
Keywords:
functional particle deposition
solid-phase synthesis
peptide microarrays
biotechnology
high-throughput screening
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Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Advanced Functional Materials cover
Advanced Functional Materials
IF:
19
Papers:
3.5W
Citations:
32.1W

Organization

R
Ruprecht Karls University Heidelberg
Scholars:
5.6W
Papers: 4.3W
Citations: 66
G
German Cancer Research Center (DKFZ)
Scholars:
1.5W
Papers: 1.1W
Citations: 17
H
Helmholtz Association
Scholars:
13.2W
Papers: 10.7W
Citations: 145
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Cited Papers

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