Publications

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Author [ Title(Asc)] Type Year
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Srirangan, K. , Akawi, L. K. , Chou, C. P. , Aucoin, M. G. , Stacey, L. E. , & Newton, C. . (2017). Use of a Case on Metabolically Engineered Escherichia coli to Develop a Framework for the Design and Analysis of Bioprocesses. International Journal of Engineering Education, 33, 751-760.
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Bagherinejad, M. R. , Sadeghi, H. M. M. , Abedi, D. , Chou, C. P. , Moazen, F. , & Rabbani, M. . (2016). Twin arginine translocation system in secretory expression of recombinant human growth hormone. Research in Pharmaceutical Sciences, 11, 461-469.
Srirangan, K. , Akawi, L. , Moo-Young, M. , & Chou, C. P. . (2012). Towards sustainable production of clean energy carriers from biomass resources. Applied Energy, 100, 172-186. 2012_towards_sustainable_production_of_clean_energy_carriers_from_biomass_resources.pdf
Chou, C. P. . (2008). Therapeutic activity of soluble CD83: Comments on Pashine et al. Immunology Letters, 115, 20-20.
Pyne, M. E. , Bruder, M. , Moo-Young, M. , Chung, D. A. , & Chou, C. P. . (2014). Technical guide for genetic advancement of underdeveloped and intractable Clostridium. Biotechnology Advances, 32, 623-641. 2014_technical_guide_for_genetic_advancement_of_underdeveloped_and_intractable_clostridium.pdf
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Zhang, L. , Narayanan, N. , Brand, S. R. , Nicolette, C. A. , Baroja, M. , Arp, J. , Wang, H. , et al. (2010). Structural identification of recombinant human CD83 mutant variant as a potent therapeutic protein. Protein Expression and Purification, 73, 140-146.
Lin, Y. H. , Hsiao, H. C. , & Chou, C. P. . (2002). Strain improvement to enhance the production of recombinant penicillin acylase in high-cell-density Escherichia coli cultures. Biotechnology Progress, 18, 1458-1461.
Pyne, M. E. , Sukhija, K. S. , & Chou, C. P. . (2010). Strain improvement of Escherichia coli to enhance recombinant protein production. In Manual of Industrial Microbiology and Biotechnology (3rd ed., pp. 273-286). ASM Press. asm_mimb3_ch19.pdf
Westbrook, A. W. , Miscevic, D. , Kilpatrick, S. , Bruder, M. R. , Moo-Young, M. , & Chou, C. P. . (2019). Strain engineering for microbial production of value-added chemicals and fuels from glycerol. Biotechnology Advances, 37, 538-568. 2019_strain_engineering_for_microbial_production_of_value-added_chemicals_and_fuels_from_glycerol.pdf
Miscevic, D. , Mao, J. - Y. , Abedi, D. , Moo-Young, M. , & Chou, C. P. . (2021). Strain engineering for high-level 5-aminolevulinic acid production in Escherichia coli. Biotechnology and Bioengineering, 118, 30-42. 2021_strain_engineering_for_high-level_5-aminolevulinic_acid_production_in_escherichia_coli.pdf
Lall, D. , Miscevic, D. , Bruder, M. , Westbrook, A. , Aucoin, M. , Moo-Young, M. , & Chou, C. P. . (2021). Strain engineering and bioprocessing strategies for biobased production of porphobilinogen in Escherichia coli. Bioresources and Bioprocessing, 8, 122. 2021_strain_engineering_and_bioprocessing_strategies_for_biobased_production_of_porphobilinogen_in_escherichia_coli.pdf
Orr, V. , Scharer, J. , Moo-Young, M. , Honeyman, C. H. , Fenner, D. , Crossley, L. , Suen, S. Y. , et al. (2012). Simultaneous clarification of Escherichia coli culture and purification of extracellularly produced penicillin G acylase using tangential flow filtration and anion-exchange membrane chromatography (TFF-AEMC). Journal of Chromatography B-Analytical Technologies in the Biomedical and Life Sciences, 900, 71-78.
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Chou, C. P. , Lin, M. I. , & Wang, W. C. . (2000). Production of heterologous Providencia rettgeri penicillin acylase in Escherichia coli. Journal of the Chinese Institute of Chemical Engineers, 31, 135-144.
Miscevic, D. , Srirangan, K. , Abedi, D. , Moo-Young, M. , & Chou, C. P. . (2019). Production of cellulosic butyrate and 3-hydroxybutyrate in engineered Escherichia coli. Applied Microbiology and Biotechnology, 103, 5215-5230. 2019_production_of_cellulosic_butyrate_and_3-hydroxybutyrate_in_engineered_escherichia_coli.pdf
Chang, C. S. , Ni, H. S. , Suen, S. Y. , Tseng, W. C. , Chiu, H. C. , & Chou, C. P. . (2008). Preparation of inorganic-organic anion-exchange membranes and their application in plasmid DNA and RNA separation. Journal of Membrane Science, 311, 336-348.
Zhong, L. Y. , Scharer, J. , Moo-Young, M. , Fenner, D. , Crossley, L. , Honeyman, C. H. , Suen, S. Y. , et al. (2011). Potential application of hydrogel-based strong anion-exchange membrane for plasmid DNA purification. Journal of Chromatography B-Analytical Technologies in the Biomedical and Life Sciences, 879, 564-572.
Narayanan, N. , & Chou, C. P. . (2008). Physiological improvement to enhance Escherichia coli cell-surface display via reducing extracytoplasmic stress. Biotechnology Progress, 24, 293-301.

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