Job title:
講師
Research theme for competitive and other funds (32):
2024 - 2027 Development of highly sensitive and rapid measurement methods for clinical testing
2022 - 2025 ミトコンドリア機能異常による老化疾患の分子病態の解明とNMNによる治療効果
2021 - 2023 Development of high-sensitivity detection technology for nucleic acid amplification using metal and metal chelator and verification of its practicality
2018 - 2020 The development of the super high sensitive detection method not to be affected by the oxidation, a reduction material in a living body sample and the potential for expansion.
2015 - 2017 Development of ultra-sensitive detection method not affected by oxidation / reduction substances in biological samples and verification of its development
Tetsuya Komene, Kotoko Kai, Kiyoko Kinpara, Tomoaki Sato, Eisaku Hokazono, Tatsuo Shimosawa, Susumu Osawa, Masanori Seimiya. Development of a plasma maltose assay method as a screening test for upper gastrointestinal disorders. Annals of Clinical Biochemistry. 2024
Eisaku Hokazono, Saori Fukumoto, Takeshi Uchiumi, SusumuOsawa. Pyrophosphate detection method using 5-Br-PAPS to detect nucleic acid amplification - Application to LAMP method -. Analytical Biochemistry. 2024. 684
Eisaku Hokazono, Eri Ota, Taiki Goto, Saori Fukumoto, YuzoKayamori, Takeshi Uchiumi, SusumuOsawa. Development of a protein assay with copper chelator chromeazurol B, based on the biuret reaction. Analytical Biochemistry. 2021
Sonoko Yoshihiro, Takuya Ishigaki, Hayato Ookurano, Fumi Yoshitomi, Taeko Hotta, Dongchon Kang, Eisaku Hokazono and Yuzo Kayamori. New colorimetric method with bromocresol purple for estimating the redox state of human serum albumin. J. Clin. Biochem. Nutr. 2020. 1-6
The Society of Analytical Bio-Science
, Japanese Journal of Clinical Chemistry
, Japanese Society of Sonographers
, Japanese Society of Laboratory Medicine
, Japanese Journal of Medical Technology
, Japanese Journal of Clinical Laboratory Automation