Please use this identifier to cite or link to this item: https://scholarbank.nus.edu.sg/handle/10635/88329
Title: Preservation of DNA and protein biofunctionality for bio-MEMS & NEMS fabrication
Authors: Trau, D. 
Jiang, J. 
Sucher, N.J.
Keywords: BioMEMS
Biomicrodevices
DNA
Microfabrication
Protein
Issue Date: 2006
Citation: Trau, D.,Jiang, J.,Sucher, N.J. (2006). Preservation of DNA and protein biofunctionality for bio-MEMS & NEMS fabrication. 2006 NSTI Nanotechnology Conference and Trade Show - NSTI Nanotech 2006 Technical Proceedings 2 : 294-296. ScholarBank@NUS Repository.
Abstract: Microfabrication processes for the creation of MEMS and BioMEMS devices, especially in silicon are not compatible with biomolecules. Silicon processing is often performed at high temperatures and makes use of aggressive chemicals including acids, bases, oxidizing chemicals and organic solvents. Contacted to such chemicals biological materials are denaturated, oxidized, hydrolyzed and their biofunctionaliry is destroyed. Therefore biological materials can only be combined with microdevices after the last microfabrication step was performed. The incompatibility of microfabrication with biological materials and molecules such as DNA or proteins is a limitation in regard of scalability, patterning and alignment of biological materials with microstructures and for the creation of integrated Biomicrodevices and BioMEMS. Recently we introduced a novel technology using a gold passivation mask to protect biomolecules during microfabrication [1]. Our process enables the integration of DNA and proteins into a mass scalable microfabrication process and preserving DNA and protein biofunctionality.
Source Title: 2006 NSTI Nanotechnology Conference and Trade Show - NSTI Nanotech 2006 Technical Proceedings
URI: http://scholarbank.nus.edu.sg/handle/10635/88329
ISBN: 0976798573
Appears in Collections:Staff Publications

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