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Aqueous two‐phase micellar systems in an oscillatory flow micro‐reactor: study of perspectives and experimental performance
Authors:André M. Lopes  Daniel P. Silva  António A. Vicente  Adalberto Pessoa‐Jr  José A. Teixeira
Affiliation:1. IBB ‐ Institute for Biotechnology and Bioengineering, Centre of Biological Engineering, University of Minho, Campus de Gualtar, Braga, 4710‐057, Portugal;2. Dept of Biochemical‐Pharmaceutical Technology, School of Pharmaceutical Sciences, University of S?o Paulo, S?o Paulo, 05508‐900, Brazil;3. Instituto de Tecnologia e Pesquisa, Universidade Tiradentes, Campus Farolandia, Aracaju‐Sergipe, 49032‐490, Brazil
Abstract:BACKGROUND: Aqueous two‐phase micellar systems (ATPMS) are micellar surfactant solutions with physical properties that make them very efficient for the extraction/concentration of biological products. In this work the main proposal that has been discussed is the possible applicability and importance of a novel oscillatory flow micro‐reactor (micro‐OFR) envisaged for parallel screening and/or development of industrial bioprocesses in ATPMS. Based on the technology of oscillatory flow mixing (OFM), this batch or continuous micro‐reactor has been presented as a new small‐scale alternative for biological or physical‐chemical applications. RESULTS: ATPMS experiments were carried out in different OFM conditions (times, temperatures, oscillation frequencies and amplitudes) for the extraction of glucose‐6‐phosphate dehydrogenase (G6PD) in Triton X‐114/buffer with Cibacron Blue as affinity ligand. CONCLUSION: The results suggest the potential use of OFR, considering this process a promising and new alternative for the purification or pre‐concentration of bioproducts. Despite the applied homogenization and extraction conditions have presented no improvements in the partitioning selectivity of the target enzyme, when at rest temperature they have influenced the partitioning behavior in Triton X‐114 ATPMS. Copyright © 2011 Society of Chemical Industry
Keywords:screening micro‐reactor  oscillatory flow mixing  aqueous two‐phase micellar system  triton X‐114  affinity ligand  glucose‐6‐phosphate dehydrogenase
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