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Microbial Cell Factories|March 21, 2006
Revisiting the Cellulosimicrobium cellulans yeast-lytic beta-1,3-glucanases toolbox: a reviewPau FerrerMethods in Molecular Biology (Clifton, N.J.)|April 19, 2014
¹³C-based metabolic flux analysis in yeast: the Pichia pastoris casePau Ferrer, Joan AlbiolMethods in Molecular Biology (Clifton, N.J.)|September 3, 2014
¹³C-based metabolic flux analysis of recombinant Pichia pastorisPau Ferrer, Joan AlbiolBiotechnology and Bioengineering|December 26, 2015
Droplet digital PCR-aided screening and characterization of Pichia pastoris multiple gene copy strainsElena Cámara, Joan Albiol, Pau FerrerJournal of Biotechnology|April 3, 2007
Sorbitol co-feeding reduces metabolic burden caused by the overexpression of a Rhizopus oryzae lipase in Pichia pastorisRamón Ramón, Pau Ferrer, Francisco ValeroJournal of Biological Engineering|February 20, 2025
Metabolic engineering of Komagataella phaffii for enhanced 3-hydroxypropionic acid (3-HP) production from methanolSílvia Àvila-Cabré, Joan Albiol, Pau FerrerMicrobial Biotechnology|November 22, 2017
Fine-tuning the P. pastoris iMT1026 genome-scale metabolic model for improved prediction of growth on methanol or glycerol as sole carbon sourcesMàrius Tomàs-Gamisans, Pau Ferrer, Joan AlbiolPlos One|January 27, 2016
Integration and Validation of the Genome-Scale Metabolic Models of Pichia pastoris: A Comprehensive Update of Protein Glycosylation Pathways, Lipid and Energy MetabolismMàrius Tomàs-Gamisans, Pau Ferrer, Joan AlbiolPlos One|August 7, 2024
Exposure to fine particulate matter in the New York City subway system during home-work commuteShams Azad, Pau Ferrer-Cid, Masoud GhandehariJournal of Biotechnology|April 6, 2004
Expression of a Rhizopus oryzae lipase in Pichia pastoris under control of the nitrogen source-regulated formaldehyde dehydrogenase promoterDavid Resina, Alícia Serrano, Francisco Valero, et al.Pageof 10