
Last modified: 2026-01-20 11:12:38
| Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
|---|---|---|---|---|---|
| Hall H, Day 2 | |||||
| (9:00–10:00) | |||||
| H201 | Design of i-Motif DNA-Modified Liposomes: pH-Sensitive Membrane Modulation | Liposomes i-motif pH-sensitive | 7-e | 537 | |
| H202 | Using CO2-based polycarbonates to prepare antibacterial/antifouling dressings for treating infectious wounds | CO2-based polycarbonate antibacterial/antifouling polymers CO2 recycling | 7-e | 107 | |
| H203 | Creation of cartilage-like tissue using mesenchymal stem cells differentiated from somatic cells | Microfiber Mesenchymal stem cells Cartilage-like tissue | 7-e | 28 | |
| (10:00–11:00) | |||||
| H204 | Chronological control of proliferation and differentiation of hematopoietic cells using chimeric antigen receptors | chimeric antigen receptor cell fate control signal transduction | 7-e | 763 | |
| H205 | Lung-selective transdermal delivery of antisense oligonucleotides using ionic liquids | nucleic acid drugs transdermal delivery organ-selective delivery | 7-e | 102 | |
| H206 | AI-based automated detection of immune cell-mediated cancer cell cytotoxicity | Artificial intelligence Immune cell cytotoxicity Cancer cell killing | 7-e | 410 | |
| (11:00–12:00) | |||||
| H207 | Centrifugal Field-Flow Fractionation-Enabled Multiplexed Immunoassay Using Nanoparticle Size and Fluorescent Color as Labels | Nanoparticle Size Protein Markers Centrifugal Field-Flow Fractionation | 7-e | 210 | |
| H208 | Precisely controlling the number of antibodies on InP quantum dot surface via gel electrophoresis | InP quantum dots Antibody modification Gel electrophoresis | 7-e | 270 | |
| H209 | Identification of Biomarker Panel Characteristic of Exhausted CAR-T Cells Based on the Biological Functions of miRNAs | CAR-T cell therapy miRNA Biological functions | 7-e | 378 | |
| (13:00–13:40) | |||||
| H213 | Membrane-based immunosensing: Evaluation of sensing performance by experimental and numerical modeling | Porous membrane Immunosensor Numerical model | 7-i | 651 | |
| H214 | Kinetic Study on the Inhibition of Edible Oil Oxidation at Frying Temperatures | Edible oil oxidation reaction mechanism oxidation kinetics | 7-h | 626 | |
| (13:40–14:40) | |||||
| H215 | Evaluation of metabolic state and its cellular heterogeneity based on transcription factor activity | Eschierichia coli Glycolysis Transcription factor | 7-f | 238 | |
| H216 | EZSCAN as a method for identifying residues that determine enzyme molecular recognition | Enzyme Software Machine Learning | 7-f | 599 | |
| H217 | Strategy for tuning the functional properties of a hyperthermophilic esterase using deep learning-assisted protein engineering | Deep learning ProteinMPNN AlphaFold | 7-f | 728 | |
| (15:00–16:00) | |||||
| H219 | Design of a Versatile Humanized VHH Scaffold via Machine Learning: Simultaneous Optimization of Developability and Affinity Acquisition | Antibody VHH | 7-a | 755 | |
| H220 | Horseradish peroxidase-immobilized mechanically ground silk fibroin nanofiber for hypoallergenic hydrogel | silk fibroin nanofiber Horseradish peroxidase immobilization | 7-a | 556 | |
| H221 | Differentiation of Mesenchymal Stem Cells in Constructs Fabricated by Bioprinting Technique Using Ultrasound Gel as Support Material | Mesenchymal Stem Cells Bioprinting Support Material | 7-a | 706 | |
| (16:00–17:00) | |||||
| H222 | Effects of arsenic binding modes on structural stability and transcriptional responses of BetI | Arsenic Cysteine Protein conformation change | 7-b | 673 | |
| H223 | Metabolic engineering and fermentation strategies for the biosynthesis of amino-functionalized aromatic compounds | Metabolic engineering Escherichia coli Corynebacterium glutamicum | 7-a | 622 | |
| H224 | 2,5-pyridinedicarboxylic acid production using metabolically engineered E. coli | Metabolic engineering Pyridinedicarboxylic Acid Escherichia coli | 7-a | 596 | |
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SCEJ 91st Annual Meeting (Kyoto, 2026)
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