Please use this identifier to cite or link to this item: http://hdl.handle.net/10362/133123
Title: Protein crystallization in a microfluidic contactor with nafion®117 membranes
Author: Polino, Mariella
Rho, Hoon-suk
Pina, M. P.
Mallada, Reys
Carvalho, Ana Luísa
Romão, Maria João C.
Coelhoso, Isabel
Gardeniers, J. G.E.
Crespo, João Goulão
Portugal, Carla A. M.
Keywords: Membrane contactors
Nafion membrane
Protein crystallization
Protein structure
Solute diffusion
Chemical Engineering (miscellaneous)
Process Chemistry and Technology
Filtration and Separation
Issue Date: Aug-2021
Citation: Polino, M., Rho, H., Pina, M. P., Mallada, R., Carvalho, A. L., Romão, M. J. C., Coelhoso, I., Gardeniers, J. G. E., Crespo, J. G., & Portugal, C. A. M. (2021). Protein crystallization in a microfluidic contactor with nafion®117 membranes. Membranes, 11(8), Article 549. https://doi.org/10.3390/membranes11080549
Abstract: Protein crystallization still remains mostly an empirical science, as the production of crystals with the required quality for X-ray analysis is dependent on the intensive screening of the best protein crystallization and crystal’s derivatization conditions. Herein, this demanding step was addressed by the development of a high-throughput and low-budget microfluidic platform consisting of an ion exchange membrane (117 Nafion® membrane) sandwiched between a channel layer (stripping phase compartment) and a wells layer (feed phase compartment) forming 75 independent microcontactors. This microfluidic device allows for a simultaneous and independent screening of multiple protein crystallization and crystal derivatization conditions, using Hen EggWhite Lysozyme (HEWL) as the model protein and Hg2+ as the derivatizing agent. This microdevice offers well-regulated crystallization and subsequent crystal derivatization processes based on the controlled transport of water and ions provided by the 117 Nafion® membrane. Diffusion coefficients of water and the derivatizing agent (Hg2+) were evaluated, showing the positive influence of the protein drop volume on the number of crystals and crystal size. This microfluidic system allowed for crystals with good structural stability and high X-ray diffraction quality and, thus, it is regarded as an efficient tool that may contribute to the enhancement of the proteins’ crystals structural resolution.
Description: UIDB/50006/2020 UIDP/50006/2020 “Erasmus Mundus Doctorate in Membrane Engineering”–EUDIME (FPA 2011–2014, http://www.eudime.unical.it
Peer review: yes
URI: http://hdl.handle.net/10362/133123
DOI: https://doi.org/10.3390/membranes11080549
ISSN: 0076-6356
Appears in Collections:FCT: DQ - Artigos em revista internacional com arbitragem científica

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