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Lab Chip ; 9(10): 1412-21, 2009 May 21.
Article in English | MEDLINE | ID: mdl-19417908

ABSTRACT

Microfluidic devices were designed to perform on micromoles of biological macromolecules and viruses the search and the optimization of crystallization conditions by counter-diffusion, as well as the on-chip analysis of crystals by X-ray diffraction. Chips composed of microchannels were fabricated in poly-dimethylsiloxane (PDMS), poly-methyl-methacrylate (PMMA) and cyclo-olefin-copolymer (COC) by three distinct methods, namely replica casting, laser ablation and hot embossing. The geometry of the channels was chosen to ensure that crystallization occurs in a convection-free environment. The transparency of the materials is compatible with crystal growth monitoring by optical microscopy. The quality of the protein 3D structures derived from on-chip crystal analysis by X-ray diffraction using a synchrotron radiation was used to identify the most appropriate polymers. Altogether the results demonstrate that for a novel biomolecule, all steps from the initial search of crystallization conditions to X-ray diffraction data collection for 3D structure determination can be performed in a single chip.


Subject(s)
Crystallography, X-Ray/instrumentation , Macromolecular Substances/chemistry , Microfluidic Analytical Techniques/instrumentation , Crystallization , Dimethylpolysiloxanes/chemistry , Polymethyl Methacrylate/chemistry
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