
Title (J) field includes “抗体”; 18 programs are found. (“Poster with Flash” presentations are double-counted.)
The search results are sorted by the start time.
| Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
|---|---|---|---|---|---|
| Day 1 | PB150 | Site-specific antibody modification using an antibody-binding protein fusion enzyme | Antibody-drug conjugate Biopharmaceutics Enzymatic conjugation | SY-67 | 555 |
| Day 1 | PB152 | Fabricating bioluminescent biosensors using an antibody binding protein with whole antibodies | Antibody Antibody binding protein Bioluminescence | SY-67 | 653 |
| Day 1 | PB126 | Monoclonal antibody production in CHO cells using an artificial transcription activation system | CHO cells monoclonal antibody transcription activation | SY-67 | 934 |
| Day 1 | PB132 | Novel Transdermal Formulation of Antibody Drugs Using Ionic Liquids | Antibody transdermal drug delivery Ionic Liquid | SY-67 | 468 |
| Day 1 | PB133 | Elucidation of the factors that contribute to high productivity of CHO cell line as a valuable host for antibody production | Chinese hamster ovary cell Antibody production Chromosome | SY-67 | 101 |
| Day 1 | PB186 | Stabilization of antibody fragment production using recombinant Escherichia coli based on DO-stat fed-batch culture | #E.coli# DO-stat fed-batch Plasmid stability | SY-67 | 791 |
| Day 1 | PB145 | Fragmentation operations at high temperatures considering the stability of antibody proteins | antibody fragment sequential chromatography digestion | SY-67 | 746 |
| Day 1 | G114 | CF3-based separation and detection of slightly aggregated nanoparticles modified with antibody | slight aggregation nanoparticles antibody modification | SY-80 | 343 |
| Day 1 | H119 | Development of mechanistic cell cultivation models in monoclonal antibody production using data-driven insights | Biopharmaceuticals Lactate consumption Glutamine | ST-21 | 728 |
| Day 1 | PB133 | Elucidation of the factors that contribute to high productivity of CHO cell line as a valuable host for antibody production | Chinese hamster ovary cell Antibody production Chromosome | SY-67 | 101 |
| Day 1 | PB145 | Fragmentation operations at high temperatures considering the stability of antibody proteins | antibody fragment sequential chromatography digestion | SY-67 | 746 |
| Day 1 | PB126 | Monoclonal antibody production in CHO cells using an artificial transcription activation system | CHO cells monoclonal antibody transcription activation | SY-67 | 934 |
| Day 1 | PB132 | Novel Transdermal Formulation of Antibody Drugs Using Ionic Liquids | Antibody transdermal drug delivery Ionic Liquid | SY-67 | 468 |
| Day 1 | PB150 | Site-specific antibody modification using an antibody-binding protein fusion enzyme | Antibody-drug conjugate Biopharmaceutics Enzymatic conjugation | SY-67 | 555 |
| Day 1 | PB152 | Fabricating bioluminescent biosensors using an antibody binding protein with whole antibodies | Antibody Antibody binding protein Bioluminescence | SY-67 | 653 |
| Day 1 | PB186 | Stabilization of antibody fragment production using recombinant Escherichia coli based on DO-stat fed-batch culture | #E.coli# DO-stat fed-batch Plasmid stability | SY-67 | 791 |
| Day 2 | J203 | Attempt to apply process systems engineering to solve technical problems in antibody drug manufacturing | Antibody drug manufacturing Process simulation Mammalian cell cultivation | SY-65 | 431 |
| Day 2 | H206 | Design of integrated upstream and downstream monoclonal antibody production processes using surrogate models | Surrogate model Machine learning Bayesian optimization | ST-21 | 816 |
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SCEJ 54th Autumn Meeting (Fukuoka, 2023)
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