Rchr
J-GLOBAL ID:200901003212147343
Update date: Sep. 27, 2022
Suzuki Yoshio
スズキ ヨシオ | Suzuki Yoshio
Contact this researcher
You can send email directly to the researcher.
Affiliation and department:
National Institute of Advanced Industrial Science and Technology
About National Institute of Advanced Industrial Science and Technology
Search "National Institute of Advanced Industrial Science and Technology"
Homepage URL (1):
http://www.aist.go.jp/RESEARCHERDB/cgi-bin/worker_detail.cgi?call=namae&rw_id=Y73198704
Research field (1):
Organic functional materials
Research keywords (5):
Organic Chemistry
, Analytical Chemistry
, Molecular Probe
, Biosensor
, Chemical Sensor
Papers (36):
Suzuki Yoshio. Development of a fluorescent peptide for the highly sensitive and selective detection of vascular endothelial growth factor. SENSORS AND ACTUATORS B-CHEMICAL. 2018. 276. 230-237
Suzuki Yoshio. Developments of novel fluorescent molecular probes for the selective detection of neurotransmitters. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY. 2018. 256
Yoshio Suzuki. Development of a fluorescent peptide for the highly sensitive and selective detection of oxytocin. SENSORS AND ACTUATORS B-CHEMICAL. 2018. 254. 321-328
Yoshio Suzuki. Design and synthesis of fluorescent reagents for selective detection of dopamine. SENSORS AND ACTUATORS B-CHEMICAL. 2017. 239. 383-389
Yoshio Suzuki, Atsushi Kuno, Yasunori Chiba. Development of fluorescent probes for "On-Off" switching based detection of lectin-saccharide interactions. SENSORS AND ACTUATORS B-CHEMICAL. 2015. 220. 389-397
more...
MISC (68):
鈴木祥夫, 黒澤茂. 生体関連物質を高感度かつ高選択的に検出するための蛍光性磁気ビーズの開発. 日本分析化学会年会講演要旨集. 2018. 67th. 197
鈴木祥夫, 田中睦生. 神経伝達物質を高感度検出するための新規蛍光分子プローブの創製. ホスト-ゲスト・超分子化学シンポジウム講演要旨集. 2018. 16th. 132
鈴木祥夫, 田中睦生. 神経伝達物質を高感度検出するための新規蛍光分子プローブの創製. 日本化学会春季年会講演予稿集(CD-ROM). 2018. 98th. ROMBUNNO.2I4-08
鈴木祥夫. タンパク質と核酸・遺伝子をはかる 総タンパク質の定量法. ぶんせき. 2018. 1. 2-9
鈴木祥夫, 田中睦生. 神経伝達物質を高感度かつ高選択的に検出するための新規蛍光分析試薬の開発. 日本分析化学会年会講演要旨集. 2017. 66th. 163
more...
Patents (50):
生体分子検出用蛍光物質
ドーパミン検出用蛍光物質
神経伝達物質イメージング方法
エンドトキシンの電気化学的濃度測定方法
タンパク質の分析方法及び分析試薬
more...
Professional career (1):
博士(工学)
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in
researchmap
.
For details, see here
.
Return to Previous Page
TOP
BOTTOM