Last modified: 2019-03-12 11:30:00
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Hall G, Day 1 | |||||
7. Biochemical engineering | |||||
(13:00–13:40) (Chair: | |||||
G113 | Development of pemetrexed-hyaluronan conjugates for treatment of malignant pleural mesothelioma | hyaluronan anti-cancer drug conjugate | 7-e | 1242 | |
G114 | Development of intranasal vaccination using Solid-in-Oil technology | Intranasal vaccination Drug delivery system Nanodispersions | 7-e | 1459 | |
(13:40–14:40) (Chair: | |||||
G115 | Simulation and assessment of monoclonal antibody production processes considering continuous manufacturing | Biopharmaceuticals Process simulation CHO cells | 7-e | 1470 | |
G116 | Elucidating proliferation signals of hematopoietic stem cells using motif-engineered receptors | chimeric receptor signal transduction motif engineering | 7-e | 124 | |
G117 | The effects of hepatocyte spheroid culture containing fragmented collagen microfibers on hepatocyte functions | collagen tissue engineering microfluidics | 7-e | 1052 | |
(15:00–16:20) (Chair: | |||||
G119 | Pulverization of okara fiber by subcriticality | okara subcriticality Pulverization | 7-h | 1308 | |
G120 | High concentration protein refolding via microflow channel dialysis | protein refolding | 7-c | 1478 | |
G121 | Development of electrophoretic analysis in supported lipid bilayer | Supported lipid bilayer Electrophoresis Lateral molecular interaction | 7-c | 134 | |
G122 | Investigation of blood cell passing and capture behavior using Metal Mesh Device | Cell separation Microfluidic device Membrane separation | 7-c | 1437 | |
Hall G, Day 2 | |||||
12. Materials engineering & interfacial phenomena | |||||
(9:00–10:00) (Chair: | |||||
G201 | In situ high-speed observational method for vanishing megascopic flowability during gelation | in situ observation vanishing megascopic flowability gelation | 12-e | 26 | |
G202 | Preparation of copper sulfide nano particle in ionic hydrogel | hydrogel Copper sulfide nanoparticle | 12-e | 965 | |
G203 | In-situ synthesis of a supramolecular gelator at an interface to control emulsion stability | supramolecular hydrogel emulsion peptide | 12-e | 1188 | |
(10:00–10:20) (Chair: | |||||
G204 | [The SCEJ Award for Outstanding Young Researcher] Study on Preparation and Characterization of Cubosomal Gel and Its Application | The SCEJ Award for Outstanding Young Researcher | 0-c | 1495 | |
(10:40–11:00) (Chair: | |||||
G206 | Development of tough ion gels with inorganic/organic hybrid network based on partially developed silica particle network | Ionic liquid Tough gel Inorganic/organic hybrid | 12-e | 1299 | |
(11:00–11:20) (Chair: | |||||
G207 | [The SCEJ Award for Outstanding Young Researcher] Micromotor Driven by Catalytic Reaction with Organic Compounds | The SCEJ Award for Outstanding Young Researcher | 0-c | 1496 | |
(11:20–12:00) (Chair: | |||||
G208 | Unique interaction forces and self-assembly of colloidal particles in nanofluid | Self-assembly Nanofluid Atomic Force Microscope | 12-a | 1279 | |
G209 | Numerical analysis of liquid phase penetration into fine powder bed | liquid penetration fine powder bed multiphase simulation | 12-a | 34 | |
7. Biochemical engineering | |||||
(13:00–14:00) (Chair: | |||||
G213 | [The SCEJ Award for Outstanding Research Achievement] Development of Cell and Tissue Engineering Techniques for Biomedical Applications | The SCEJ Award for Outstanding Research Achievement | 0-b | 1491 | |
G214 | [The SCEJ Award for Outstanding Research Achievement] Biomolecular Engineering Based on Biocatalytic Reactions | The SCEJ Award for Outstanding Research Achievement | 0-b | 1492 | |
G215 | [The SCEJ Award for Outstanding Young Researcher] Development of Novel Biomedical Particles Based on Particle Shape-dependent Interaction with Living Body | The SCEJ Award for Outstanding Young Researcher | 0-c | 1493 | |
(14:00–14:40) (Chair: | |||||
G216 | The high sensitive detection of the small molecule antigen on graphene by the open sandwich immunoassay | immunoassay Open-sandwich ELISA graphene FET | 7-i | 935 | |
G217 | Rapid and simple immunoassay using solution permeation into membrane pores | immunoassay track-etched membrane solution permeation | 7-i | 1339 | |
(15:00–16:00) (Chair: | |||||
G219 | Development of short peptides bearing histidine residues as vehicles for poorly water soluble drugs and effect of addition of cofactors | peptide poorly water soluble drug solubility | 7-a | 109 | |
G220 | Machine-learning-guided mutagenesis platform for evolution: from GFP to YFP | evolution fluorescent protein Machine-learning | 7-a | 1418 | |
G221 | Development of a digital immunodetection system using an artificial cell-based biosensor | Biosensor Immunoassay beta-glucuronidase | 7-a | 1179 | |
(16:00–17:00) (Chair: | |||||
G222 | Cytosolic protein delivery using phase-change nanodroplets | Protein delivery Ultrasound Endosomal release | 7-a | 1405 | |
G223 | Analysis of secretion processes in therapeutic antibody production cells aiming at the improvement of productivity | Therapeutic antibody CHO cell Protein secretion process | 7-a | 1393 | |
G224 | Photo-switchable cell immobilization reagents for cell manipulation | Cell manipulation PEG-lipid spiropyran | 7-a | 1394 | |
Hall G, Day 3 | |||||
(10:40–12:00) (Chair: | |||||
G306 | Metabolic even-split cycle generates ReLU response | systems biology design principle | 7-f | 5 | |
G307 | Metabolic flux control technique with optogenetic switch | optogenetic switch metabolic flux Escherichia coli | 7-f | 1442 | |
G308 | Co-flocculation of Saccharomyces cerevisiae on the flocs formed by Escherichia coli | Escherichia coli floc formation Saccharomyces cerevisiae | 7-b | 186 | |
G309 | Control of enzymatic reactions based on characteristics of polyunsaturated phospholipid vesicles | Polyunsaturated lipids Vesicles Enzyme Reactions | 7-b | 1378 | |
12. Materials engineering & interfacial phenomena | |||||
(13:00–14:40) (Chair: | |||||
G313 | Aqueous two-phase system achieved in water-in-oil emulsion droplets prepared by membrane emulsification technique | Aqueous two-phase system Membrane emulsification Osmotic pressure | 12-b | 1402 | |
G314 | One-pot incorporation of hydrophobic fluorescent dyes into sugar-immobilized PMMA particles during their growth | sugar-immobilized polymer particle fluorescent dye one-pot formation | 12-c | 1384 | |
G315 | Fabrication of Stimuli Responsive Nanoparticle Consisting of Silsesquioxane | silsesquioxane anticancer drug stimuli-responsive nanoparticle | 12-c | 1387 | |
G316 | Synthesis of pH/redox dual-responsive polylactide cross-linked micelles with a targeting ability for anticancer drug delivery | polylactide drug delivery cancer | 12-c | 1315 | |
G317 | Mechanistic study of hemolysis by silica nanoparticles | Red blood cells Silica nanoparticles Hemolysis | 12-d | 1131 | |
(15:00–17:00) (Chair: | |||||
G319 | Size-controlled synthesis of gold nanoparticles by pulsed ultrasound and ultrafine bubbles | Gold nanoparticle Ultrasound Ultrafinebubble | 12-d | 1130 | |
G320 | Preparation of metal microcapsules via electroless plating on droplet templates | Metal microcapsules Electroless-plating Particle adsorption | 12-f | 1401 | |
G321 | Biodegradation of block copolymers from renewables | block copolymer low-temperature processing pressure-induced phase transition | 12-j | 4 | |
G322 | Synthesis of Rare-Earth-Based Intermetallic Nanoparticles by Top-Down Approaches: The Application to Catalyst for Ammonia Synthesis | Laser ablation Flash evaporation intermetallic compound | 12-d | 995 | |
G323 | Morphologies and unique properties of carbon nanohorns synthesized by arc discharge technique | carbon nanohorn arc discharge nanoparticle | 12-d | 1091 | |
G324 | Properties improvement of Ag-coated Cu powder by forming Ni barrier layer | Ag-coated Cu powder electrical resistivity diffusion barrier | 12-c | 175 |
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SCEJ 84th Annual Meeting (Tokyo, 2019)