Development of spirulina for the manufacture and oral delivery of protein therapeutics
暂无分享,去创建一个
Miaohua Zhang | Caitlin E. Gamble | R. Takeuchi | R. Guerrant | D. Volkin | M. Tasch | Damian Carrieri | Tammy Nguyen | Jason W. Dang | C. Behnke | M. Gewe | D. Bolick | R. Kuestner | Alexandria M. Taber | D. Fletcher | F. Grassi | Hui Zhao | J. Agosti | B. Jester | Jian Xiong | C. Brady | Lisa Perruzza | L. Goetsch | Tracy Saveria | James Roberts | Troy Paddock | Alex J. Pollock | Thomas Adame | N. Khuong | Kendra Cruickshank | J. Ferrara | Rachelle Lim | Stacey Ertel | Jamie Lee | David T. Doughty | Jacob Marshall | N. Sanjaya | Anissa Martinez | Bryce Kaldis | Kristjan Sigmar | Esha Afreen | A. Randolph | Ashley Krzeszowski | Brittney Robinett | Brian Finrow | B. Kadis | David T. Bolick
[1] H. Kiyono,et al. Development of Antibody-Fragment–Producing Rice for Neutralization of Human Norovirus , 2021, Frontiers in Plant Science.
[2] E. Egelman,et al. Atomic structure of the Campylobacter jejuni flagellar filament reveals how ε Proteobacteria escaped Toll-like receptor 5 surveillance , 2020, Proceedings of the National Academy of Sciences.
[3] N. Callewaert,et al. Structural Basis for Potent Neutralization of Betacoronaviruses by Single-Domain Camelid Antibodies , 2020, Cell.
[4] P. Bradley,et al. Engineering and functionalization of large circular tandem repeat protein nanoparticles , 2020, Nature Structural & Molecular Biology.
[5] P. Ralph,et al. Emerging Technologies in Algal Biotechnology: Toward the Establishment of a Sustainable, Algae-Based Bioeconomy , 2020, Frontiers in Plant Science.
[6] Scott A. Rifkin,et al. The circadian clock and darkness control natural competence in cyanobacteria , 2019, Nature Communications.
[7] S. Schillberg,et al. Critical Analysis of the Commercial Potential of Plants for the Production of Recombinant Proteins , 2019, Front. Plant Sci..
[8] Gregory L. Medlock,et al. A novel mouse model of Campylobacter jejuni enteropathy and diarrhea , 2018, bioRxiv.
[9] G. Hansman,et al. Nanobodies targeting norovirus capsid reveal functional epitopes and potential mechanisms of neutralization , 2017, PLoS pathogens.
[10] M. Levine,et al. Global burden of diarrheal diseases among children in developing countries: Incidence, etiology, and insights from new molecular diagnostic techniques. , 2017, Vaccine.
[11] M. Seeger,et al. Synthetic single domain antibodies for the conformational trapping of membrane proteins , 2017, bioRxiv.
[12] D. Tribble,et al. Prophylactic Efficacy of Hyperimmune Bovine Colostral Antiadhesin Antibodies Against Enterotoxigenic Escherichia coli Diarrhea: A Randomized, Double-Blind, Placebo-Controlled, Phase 1 Trial , 2017, The Journal of infectious diseases.
[13] S. Cheevadhanarak,et al. Overcoming Intrinsic Restriction Enzyme Barriers Enhances Transformation Efficiency in Arthrospira platensis C1 , 2017, Plant & cell physiology.
[14] Yue Jiang,et al. Chlorella species as hosts for genetic engineering and expression of heterologous proteins: Progress, challenge and perspective , 2016, Biotechnology journal.
[15] Fatima Aziz,et al. Use of quantitative molecular diagnostic methods to identify causes of diarrhoea in children: a reanalysis of the GEMS case-control study , 2016, The Lancet.
[16] Paola Lettieri,et al. Life‐cycle and cost of goods assessment of fed‐batch and perfusion‐based manufacturing processes for mAbs , 2016, Biotechnology progress.
[17] Susan S. Taylor,et al. Structure of smAKAP and its regulation by PKA‐mediated phosphorylation , 2016, The FEBS journal.
[18] Mark A. Miller,et al. Pathogen-specific burdens of community diarrhoea in developing countries: a multisite birth cohort study (MAL-ED). , 2015, The Lancet. Global health.
[19] S. Tzipori,et al. Hyperimmune bovine colostrum as a novel therapy to combat Clostridium difficile infection. , 2014, The Journal of infectious diseases.
[20] D. Schmidt,et al. A novel multivalent, single-domain antibody targeting TcdA and TcdB prevents fulminant Clostridium difficile infection in mice. , 2014, The Journal of infectious diseases.
[21] J. Mell,et al. Natural Competence and the Evolution of DNA Uptake Specificity , 2014, Journal of bacteriology.
[22] C. Szymanski,et al. Pentavalent Single-Domain Antibodies Reduce Campylobacter jejuni Motility and Colonization in Chickens , 2013, PloS one.
[23] L. Hammarström,et al. Anti-rotavirus protein reduces stool output in infants with diarrhea: a randomized placebo-controlled trial. , 2013, Gastroenterology.
[24] Serge Muyldermans,et al. Nanobodies: natural single-domain antibodies. , 2013, Annual review of biochemistry.
[25] Matteo Dal Peraro,et al. Arranged sevenfold: structural insights into the C-terminal oligomerization domain of human C4b-binding protein. , 2013, Journal of molecular biology.
[26] S. Tzipori,et al. Hyperimmune bovine colostrum for treatment of GI infections , 2013, Human vaccines & immunotherapeutics.
[27] Asawin Meechai,et al. Systems biology and metabolic engineering of Arthrospira cell factories , 2012, Computational and structural biotechnology journal.
[28] A. Klindworth,et al. Evaluation of general 16S ribosomal RNA gene PCR primers for classical and next-generation sequencing-based diversity studies , 2012, Nucleic acids research.
[29] S. A. Wilson,et al. Recent advances towards development and commercialization of plant cell culture processes for the synthesis of biomolecules. , 2012, Plant biotechnology journal.
[30] J. Tanha,et al. Engineered Single-Domain Antibodies with High Protease Resistance and Thermal Stability , 2011, PloS one.
[31] R. Robins-Browne,et al. Randomized control trials using a tablet formulation of hyperimmune bovine colostrum to prevent diarrhea caused by enterotoxigenic Escherichia coli in volunteers , 2011, Scandinavian journal of gastroenterology.
[32] S. Mayfield,et al. Production of therapeutic proteins in algae, analysis of expression of seven human proteins in the chloroplast of Chlamydomonas reinhardtii. , 2010, Plant biotechnology journal.
[33] L. Saif,et al. Llama-Derived Single-Chain Antibody Fragments Directed to Rotavirus VP6 Protein Possess Broad Neutralizing Activity In Vitro and Confer Protection against Diarrhea in Mice , 2008, Journal of Virology.
[34] A. Basit,et al. Measurements of rat and mouse gastrointestinal pH, fluid and lymphoid tissue, and implications for in‐vivo experiments , 2008, The Journal of pharmacy and pharmacology.
[35] D. Murphy. Improving containment strategies in biopharming. , 2007, Plant biotechnology journal.
[36] H. Kiyono,et al. Rice-based mucosal vaccine as a global strategy for cold-chain- and needle-free vaccination , 2007, Proceedings of the National Academy of Sciences.
[37] J. Fox. Turning plants into protein factories , 2006, Nature Biotechnology.
[38] Stefan Bertilsson,et al. Evaluation of 23S rRNA PCR Primers for Use in Phylogenetic Studies of Bacterial Diversity , 2006, Applied and Environmental Microbiology.
[39] Rainer Fischer,et al. Molecular farming in plants: host systems and expression technology. , 2003, Trends in biotechnology.
[40] J. Howard,et al. Production of recombinant proteins in transgenic plants: Practical considerations , 1997, Biotechnology and bioengineering.
[41] A. Hiatt,et al. Production of antibodies in transgenic plants , 1989, Nature.
[42] C. H. Lin,et al. Cloning and expression of the human erythropoietin gene. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[43] K. Amako,et al. Motility as an intestinal colonization factor for Campylobacter jejuni. , 1985, Journal of general microbiology.
[44] Gustav Ammerer,et al. Expression of a human gene for interferon in yeast , 1981, Nature.
[45] N. Adham,et al. Profiles of pure pancreatic secretions obtained by direct pancreatic duct cannulation in normal healthy human subjects. , 1978, Gastroenterology.
[46] G. Fink,et al. Transformation of yeast. , 1978, Proceedings of the National Academy of Sciences of the United States of America.
[47] A. Riggs,et al. Expression in Escherichia coli of a chemically synthesized gene for the hormone somatostatin. , 1977, Science.
[48] Richard Axel,et al. Transfer of purified herpes virus thymidine kinase gene to cultured mouse cells , 1977, Cell.
[49] A. C. Chang,et al. Construction of biologically functional bacterial plasmids in vitro. , 1973, Proceedings of the National Academy of Sciences of the United States of America.