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Enzyme and Microbial Technology|May 20, 2020
Use of polyethylenimine to produce immobilized lipase multilayers biocatalysts with very high volumetric activity using octyl-agarose beads: Avoiding enzyme release during multilayer productionSara Arana-Peña, Nathalia S Rios, Carmen Mendez-Sanchez, et al.International Journal of Biological Macromolecules|March 29, 2019
New applications of glyoxyl-octyl agarose in lipases co-immobilization: Strategies to reuse the most stable lipaseSara Arana-Peña, Carmen Mendez-Sanchez, Nathalia S Rios, et al.Biochimica Et Biophysica Acta. Proteins and Proteomics|June 16, 2019
Immobilization of lipase from Pseudomonas fluorescens on glyoxyl-octyl-agarose beads: Improved stability and reusabilityNathalia S Rios, Carmen Mendez-Sanchez, Sara Arana-Peña, et al.International Journal of Biological Macromolecules|October 27, 2019
Coimmobilization of different lipases: Simple layer by layer enzyme spatial orderingSara Arana-Peña, Nathalia S Rios, Carmen Mendez-Sanchez, et al.Frontiers in Bioengineering and Biotechnology|March 18, 2020
Effects of Enzyme Loading and Immobilization Conditions on the Catalytic Features of Lipase From Pseudomonas fluorescens Immobilized on Octyl-Agarose BeadsSara Arana-Peña, Nathalia S Rios, Diego Carballares, et al.Enzyme and Microbial Technology|December 26, 2019
Modulating the properties of the lipase from Thermomyces lanuginosus immobilized on octyl agarose beads by altering the immobilization conditionsYuliya Lokha, Sara Arana-Peña, Nathalia S Rios, et al.International Journal of Biological Macromolecules|March 1, 2019
Chitosan activated with divinyl sulfone: a new heterofunctional support for enzyme immobilization. Application in the immobilization of lipase B from Candida antarcticaBruna B Pinheiro, Nathalia S Rios, Elena Rodríguez Aguado, et al.Pageof 1