Last modified: 2025-01-18 14:10:04
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
7. Biochemical engineering | |||||
(9:00–10:20) | |||||
M201 | Verification of the usefulness of oxygen transfer coefficient measured by sensors with excellent response speed | oxygen transfer coefficient DO sensor Scalability | 7-a | 69 | |
M202 | Improvement of high cell density cultures of filamentous fungi using FULLZONEĀ® | high cell density cultures mixing filamentous fungi | 7-a | 281 | |
M203 | Evaluation of a Yeast Cultivation System Utilizing the Dispersion Mechanism of a Novel Agitator Blade | aerobic culture kLa agitation | 7-a | 421 | |
M204 | Increasing the sensitivity of whole-cell sensors by controlling arsenic metabolism. | As(III) protein aggregation whole-cell sensor | 7-a | 569 | |
(10:40–11:40) | |||||
M206 | Lipid Nanoparticle Formation Encapsulating mRNA Using a Microreactor for Mixing at a High Flow Rate Ratio | Lipid Nanoparticle mRNA Microreactor | 7-e | 35 | |
M207 | Development of ionic liquid formulations for organ-selective transdermal delivery of nucleic acid drugs | nucleic acid drugs transdermal delivery organ-selective delivery | 7-e | 71 | |
M208 | Double Synergy between Linear and Cyclic Antimicrobial Peptides | Antimicrobial peptides Synergy linear and cyclic peptides | 7-e | 289 | |
(11:40–12:00) | |||||
M209 | [The SCEJ Award for Outstanding Research Achievement] Practical chemical engineering research in the medical field based on functional biomaterials and organoid | The SCEJ Award for Outstanding Research Achievement | 0-b | 720 | |
(13:00–14:00) | |||||
M213 | Development of transdermal vaccine formulation using transdermal penetration enhancer and verification of efficacy | Transdermal administration Vaccine Immunology | 7-e | 295 | |
M214 | Disposable sensor for detecting vancomycin in human serum using molecularly imprinted carbon paste | Molecular Imprinting Disposable Sensor Therapeutic Drug Monitoring | 7-e | 358 | |
M215 | Application of formulation design based on Supraparticles to drug delivery systems | Supraparticles drug delivery systems nanoparticles | 7-e | 427 | |
(14:00–14:40) | |||||
M216 | Effect of a Film-Forming Emulsion on Ultraviolet B-induced Skin Damage | Transdermal drug delivery system Ultraviolet B-induced skin damage Emulsion | 7-e | 513 | |
M217 | Detection of virus-induced cytopathic effects using deep learning | Viral contamination detection Deep learning Cell therapy products | 7-e | 543 | |
(15:00–16:00) | |||||
M219 | Mechanism of transdermal delivery using different eutectic mixture | Eutectic mixture transdermal delivery | 7-e | 605 | |
M220 | Sequential control of two cell fates using cell fate-inducing CARs | chimeric antigen receptor cell fate control signal transduction | 7-e | 634 | |
M221 | Development of adjuvant for subunit vaccines using peptide-based supramolecules | Self-assembly Peptides Vaccine adjuvant | 7-e | 641 | |
(16:00–16:40) | |||||
M222 | Membrane cholesterol-binding recombinant proteins for modulating cellular function | Cholesterol Plasma membrane Endoplasmic reticulum | 7-e | 646 | |
M223 | Shark IgNAR Antibody Production in CHO Cells: the production bottleneck and a solution exploring | Immunoglobulin new antigen receptor Recombinant antibody production bottleneck Chinese hamster ovary cells | 7-d | 496 |
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SCEJ 90th Annual Meeting (Tokyo, 2025)