Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
M(¸áÁ°) | |||||
(10:00–11:00) (Chair: Horiuchi Jun-ichi, Mitome Noriyo) | |||||
M01 | Cultivation of Aurantiochytrium sp. L3W using organic waste | Aurantiochytrium sp. cultivation organic waste | 7-g | 176 | |
M02 | Development of measurement method of propulsive force of new Volvox using scanning probe microscope | Volvox SPM | 7-g | 38 | |
M03 | 1,3PDO production by genetically engineered cyanobacteria employing a photobioreactor based on pH-stat operation. | biochemical engineering cyanobacteria photobioreactor | 7-a | 13 | |
M04 | High efficient D-lactic acid production from biomass by genetically modified lactic acid bacteria. | Corn cob D-lactic acid Simultaneous saccharification and fermentation | 7-a | 14 | |
M05 | Single chain antibody production by recombinant E. coli using DO-stat fed-batch culture | Fed-Batch culture E.coli DO-stat | 7-a | 20 | |
(11:00–12:00) (Chair: Harada Hiroyuki, Rie Wakabayashi) | |||||
M06 | Preparation of injection vaccine against bacterial fish disease (NIT or Nippon Inst. Tech. or NITechUC) *Shinohara Yu, | Injection vaccine | 7-e | 33 | |
M07 | Development of Transcutaneous Vaccine Delivery using Biocompatible Ionic Liquid | Ionic Liquid Transdermal vaccine Biocompatible | 7-e | 85 | |
M08 | Development of drug delivery carrier by multi-component molecular assembly | self-assembly peptide amphiphile drug delivery system | 7-e | 124 | |
M09 | Three-dimensional cultivation of supportive cell for antibody production using polymer particle having grafted polymer chain | Grafted polymer chain Three-dimensional cultivation Supportive cell for antibody production | 7-e | 68 | |
M10 | Chiral selective adsorption of triptophan with porous polymer particles impregnating phospholipid | Chiral selective adsorption porous particles phospholipid | 7-c | 178 | |
Lunch break | |||||
M(¸á¸å) | |||||
(13:00–14:12) (Chair: Kumada Y., Shimanouchi Toshinori) | |||||
M16 | purification and analysis of inhibitory subunit ¦Å of ATPsynthase | ATPsynthase inhibitory subunit ¦Å | 7-b | 39 | |
M17 | Purification of F1-ATPase and analysis of role of epsilon subunit | ¦Å subunit F$1$-ATPase High purity purification | 7-b | 19 | |
M18 | The analysis of cooperativity of Fo-c subunits in FoF1ATP synthase (Nat. Inst. Tech. or Nippon Inst. Tech. or NITechUC) *Takashima Hikaru, | FoF1ATP synthase | 7-b | 31 | |
M19 | Life hack with ethylene | Ethylene gas | 7-b | 22 | |
M20 | The influence of shells on living organisms | shell | 7-b | 26 | |
M21 | Development of nano vaccine for bacterial fish disease using new nanomaterial | nano vaccine nanomaterial | 7-b | 44 | |
(14:12–15:24) (Chair: Kamura Atsushi, Ohno Masaki) | |||||
M22 | Efficient production of therapeutic enzyme, human Kynureninase using recombinant E. coli. | Kynureninase Fed-batch E. coli | 7-b | 46 | |
M23 | Efficient production of camelid antibody fragment VHH by fed-batch culture of recombinant E. coli | VHH fed-batch E. coli | 7-b | 47 | |
M24 | Efficient recovery of exosomal vesicles using single-chain Fv immobilized solid supports | scFv Exosome CD9 | 7-b | 30 | |
M25 | Relevance of seeding density and germination. | seeding density germination | 7-d | 53 | |
M26 | Creation of "Nanophya pygmaea habitat distribution map" using environmental DNA analysis method | Nanophya pygmaea environmental DNA | 7-d | 29 | |
M27 | Kumap | Arc-GIS | 7-f | 21 |