Japanese page
SCEJ

SCEJ 85th Annual Meeting (2020) / / IChES 2020

List of received applications (By topics code)


7) Biochemical engineering

7-e. Medical

Most recent update: 2020-09-26 15:59:01

The keywords that frequently used
in this topics code.
KeywordsNumber
molecularly imprinted polymer3*
tissue engineering3*
hydrogel3*
sensor2
nanoparticles2
Spheroid2
bioprinting2
biomaterial2
antitumor effect2
Drug Delivery1

ACKN
No.
Title/Author(s)KeywordsStyle
75Analysis of corneal epithelial cell sheet behavior using kinetic model
(Osaka U.) *(Stu)Kamioka Jyunya, Sasaki Kei, Nguyen Thi Nhu Trang, Baba Koichi, (Japan Tissue Eng.) Tanaka Tomoyo, Teranishi Yosuke, Ogasawara Takahiro, Inoie Masukazu, Hata Ken-ichiro, (Osaka U.) Nishida Kohji, (Reg)Kino-oka Masahiro
Computer simulation
Cellular behavior
Kinetic model
P
139Improved reproducibility of cell experiment using the image-based cellular morphological information for evaluation of functional materials
(Nagoya U.) *(Stu)Nishi Suzuka, (Reg)Kanie Kei, Imai Yuta, (Stu)Takemoto Yuto, (Reg)Kato Ryuji
cell quality
biomaterial
peptide
P
160Development of cell cryoprotectant based on trehalose
(Kyushu U.) Chouno Takehiro, Yoshida Kozue, (Reg)Ono Fumiyasu, (Reg)Shirakigawa Nana, (Reg)Sakai Yusuke, *(Reg)Ijima Hiroyuki
cryoprotectant
trehalose
hepatocytes
O
247Development of genetically-engineered link module with hyaluronan specific binding property
(U. Tokyo) *(Stu)Okawa Masashi, Tanabe Aki, (Reg)Ohta Seiichi, (Reg)Nagatoishi Satoru, Tsumoto Kouhei, (Reg)Ito Taichi
hyaluronan binding protein
transglutaminase
link module
P
263Cell patterning by inkjet printing for cell migration assay on hydrogel substrates
(Osaka U.) *(Stu)Kimura Miyu, Enkhtuul Gantumur, Mubarok Wildan, (Reg)Sakai Shinji
hydrogel
inkjet printing
cell patterning
P
338Therapeutic Effects of Trehalose Liposomes against Breast Cancer Leading to Apoptosis
(Sojo U.) *(Stu)Sonoda Mayuri, (Reg)Kuwabara Keiji, (Reg)Ichihara Hideaki, (Reg)Matsumoto Yoko
antitumor effect
trehalose liposome
breast cancer
P
341Therapeutic effect of cationic liposome that strategically targets the cell membrane potential of cholangiocarcinoma cells with negative charge
(Sojo U.) *(Stu)Takaki Hiromitsu, (Reg)Motomura Muneaki, (Reg)Ichihara Hideaki, (Reg)Matsumoto Yoko
antitumor effect
cationic liposome
cholangiocarcinoma
P
385Evaluation of cancer spheroids using the image analysis
(Nagoya U.) *(Stu)Kada Yuriko, Shibuta Mayu, Kato Hirohito, (U. Tsukuba) Kusakabe Ryoko, (Nagoya U.) (Reg)Kanie Kei, (NCCRI) Muto Michihiro, (U. Tsukuba) Matsui Hirofumi, (AIST) (Reg)Kanamori Toshiyuki, (ESCO) Yanagisawa Masumi, (AIST) Sugiura Shinji, (Nagoya U.) (Reg)Kato Ryuji
cancer
image analysis
spheroid
P
410A portable blood purification device combining a membrane filter and gel-embedded adsorbent
(Hosei U.) *(Stu)Jeong Seongyun, Idota Naokazu, (Reg)Yamashita Akihiro
blood purification
adsorbent
gel
P
412Evaluation of diffusivity of the polylactic acid-polyvinylpyrrolidone flat sheet membrane for drug delivery system
(Hosei U.) *(Stu)Mitsuzuka Takanori, Idota Naokazu, (Reg)Yamashita Akihiro
Drug delivery system
Controlled release
Diffusion coefficient
P
429Development of amyloid β-targeted gold nanoparticles for the treatment of Alzheimer’s disease
(U. Tokyo) *(Reg)Ohta Seiichi, Onomura Tomoyuki, (Reg)Ito Taichi
Drug Delivery
Nanoparticles
Amyloid
O
430Microfabrication of porous hydrogels using photo-crosslinkable gelatin for cell cultivation
(Chiba U.) Minoda Yoshimasa, *(Stu)Hori Aruto, Utoh Rie, (Reg)Yamada Masumi, (Reg)Seki Minoru
tissue engineering
cell culture
hydrogel
P
4533D bioprinting with inks composed of silk fibroin nanofibers
(Osaka U.) *(Stu)Yoshii A., (Nagasuna Mayu) Nagasuna O., Sakurai S., (Osaka U.) (Reg)Sakai S.
3D bioprinting/biofabrication
Biocompatibility
Fibre-based biomaterials
P
470Development of 3D bioprinting technology using silk fibroin ink
(Osaka U.) *(Stu)Morita Takahiro, (Stu)Yoshii Ayano, (Reg)Sakai Shinji
silk fibroin
tissue engineering
bioprinting
P
472Direct implantation of β cell aggregates using a hydrogel microwell device
(U. Tokyo) *(Stu)Tulakarnwong Sarun, (NCGM) Inagaki F Natsuko, (U. Tokyo) (Stu)Oki Yuichiro, (Reg)Ohta Seiichi, Shinohara Marie, (Reg)Sakai Yasuyuki, (Reg)Ito Taichi
Hydrogel microwell
Spheroid
Insulinoma
P
510Measurement of proton release from osteoclasts using monolayer molybdenum disulfide
(Tokyo Tech) *(Stu)Watanabe K., Tezuka S., Noguchi H., (Reg)Tanaka M., Hayamizu Y., (Reg)Okochi M.
2D nanosheet
Molybdenum disulfide
Osteoclast
P
522Development of a nanofiber capable of DNA delivery in vivo
(Osaka U.) *(Stu)Furuno Kotoko, Suzuki Keiichiro, (Reg)Sakai Shinji
electrospinning
gene delivery
in vivo
P
553Pollinosis treatment by transdermal delivery using solid-in-oil technique
(Kyushu U.) *(Stu)Higashijima Koki, (Stu)Kong Qingliang, (Reg)Tahara Yoshiro, (Reg)Wakabayashi Rie, (Reg)Kamiya Noriho, (Reg)Goto Masahiro
Immunotherapy
Transdermal drug delivery system
T cell epitope peptide
P
558Development of 3D bioprinting technology combining two enzyme reactions
(Osaka U.) *(Stu)Harada Ryohei, (Stu)Yamamoto Shota, (Clermont Auvergne U.) Delattre Cedric, (Osaka U.) (Reg)Sakai Shinji
hydrogel
bioprinting
tissue engineering
P
5703D printing wound dressing obtained from inks composed of chitosan & chitosan nanofibers.
(Osaka U.) *(Stu)Yamamoto Shota, (Reg)Sakai Shinji
chitosan nanofibers
wound dressing
3D print
P
585Preparation of high-selective fluorescent molecularly imprinted polymer nanoparticles for serotonin detection by gradual extraction.
(Shibaura Inst. Tech.) *(Stu)Endo K., (Reg)Yoshimi Y.
serotonin
molecularly imprinted polymer
nanoparticles
P
596Display of amylidgenic proteins on liposome membrane for a detection of amyloids
(Okayama U.) *(Stu)Nishio Kaito, (Reg)Shimanouchi Toshinori, (Reg)Kimura Yukitaka
liposome
protein display
amyloids
P
602Recombinant antibody production using a transactivator system in CHO cells.
(Kyushu U.) *(Stu)Guo Ning, (Reg)Kawabe Yoshinori, (Stu)Zheng Feiyang, (Reg)Kamihira Masamichi
CHO cells
recombinant antibody
biopharmaceuticals
P
637Development of novel oral anticoagulants sensor using molecularly imprinted polymer immobilized on carbon paste electrode
(Shibaura Inst. Tech.) *(Stu)Etori R., (Reg)Yoshimi Y.
edoxaban
molecularly imprinted polymer
sensor
P
642Investigation of optimal crosslinking monomer composition for meropenem sensor using a graphite-paste electrode grafted with molecularly imprinted polymer
(Shibaura Inst. Tech.) *(Stu)Kanai M., (Reg)Yoshimi Y.
meropenem
molecularly imprinted polymer
sensor
P
699Geometric effects on differentiation of iPS cells in a three-dimensional culture using hollow fibers.
(Kyushu U.) *(Reg)Mizumoto Hiroshi, Ooka Miho, Matsushita Sakiko, (Stu)Taniguchi Ryo, (Stu)Nomoto Sho, (Reg)Kajiwara Toshihisa
iPS cells
differentiation
three-dimensional culture
O
730Development of a cubic liquid crystal for enhancing skin permeation of peptide antigens
(Kyushu U.) *(Stu)Kozaka Shuto, (Reg)Wakabayashi Rie, (Reg)Kamiya Noriho, (Reg)Goto Masahiro
liquid crystal
transcutaneous drug delivery
peptide antigen
O
749The effect of amino acid cations in transdermal peptide delivery using ionic liquids
(Kyushu U.) *(Stu)Fujisawa Hiroki, (Reg)Tahara Yoshiro, (Reg)Wakabayashi Rie, (Reg)Kamiya Noriho, (Reg)Goto Masahiro
ionic liquid
transdermal delivery
biomaterial
P
792Optimal administration design of transcutaneous vaccine using S/O formulation
(Kyushu U.) (Reg)Goto Masahiro, (Reg)Kamiya Noriho, (Reg)Wakabayashi Rie, Kitaoka Momoko, *(Stu)Hayashi Ryotaro
vaccine
optimisation
Formulation
P

List of received applications (By topics code)

List of received applications
SCEJ 85th Annual Meeting (2020)
IChES 2020

(C) 2020 The Society of Chemical Engineers, Japan. . All rights reserved.
Most recent update: 2020-09-26 15:59:01
For more information contact Organizing Committee, SCEJ 85th Annual Meeting (2020) / / IChES 2020
E-mail: inquiry-85awww3.scej.org
This page was generated by easp 2.46; update.pl 2.37 (C)1999-2015 kawase