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Hydrophilic and hydrophobic patterned template for DNA chip microarray
Microarray-based DNA chips provide architecture for multi-analyte sensing. In this paper, we report a new approach for DNA chip microarray fabrication. Multifunctional DNA chip microarray was made by immobilizing many kinds of biomaterials on transducers (particles). DNA chip microarray was prepared by randomly distributing a mixture of the particles on a chip pattern containing thousands of μm-scale sites. The particles occupied a different sites from site to site. The particles were arranged on the chip pattern by the random fluidic selfassembly (RFSA) method, using a hydrophobic interaction for assembly.
Hydrophilic and hydrophobic patterned template for DNA chip microarray
Microarray-based DNA chips provide architecture for multi-analyte sensing. In this paper, we report a new approach for DNA chip microarray fabrication. Multifunctional DNA chip microarray was made by immobilizing many kinds of biomaterials on transducers (particles). DNA chip microarray was prepared by randomly distributing a mixture of the particles on a chip pattern containing thousands of μm-scale sites. The particles occupied a different sites from site to site. The particles were arranged on the chip pattern by the random fluidic selfassembly (RFSA) method, using a hydrophobic interaction for assembly.
Hydrophilic and hydrophobic patterned template for DNA chip microarray
Yong-Sung Choi, (Autor:in) / Jong-Dae Moon, (Autor:in) / Young-Soo Kwon, (Autor:in) / Kyung-Sup Lee, (Autor:in)
01.10.2006
432840 byte
Aufsatz (Konferenz)
Elektronische Ressource
Englisch
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