Research theme for competitive and other funds (14):
2020 - 2024 Development of a highly functional microkidney model and its application to bioassays
2018 - 2021 Development of a Micro-Glomerular Model and its Pathological Model for Bioassays
2015 - 2019 Development of high performance micro-human models
2015 - 2017 Development of micro-3D tissues having capillary vessel network
2012 - 2015 Development of micro-human models for bioassays
2011 - 2012 Development of micro blood-brain barrier
2010 - 2012 Analysis of stable carbon centered radicals and their physiological effects
2009 - 2010 バイオアベイラビリティ試験のためのマイクロ消化器モデルの開発
2004 - 2006 超高機能マイクロ・ナノ細胞実験システムの開発
2002 - 2005 Construction of biochemical analytical systems using the microchip technology
2001 - 2003 Organic synthesis employing liquid/liquid or liquid/solid interface in microchip and development of pile-up-type chemical production system
2001 - 2002 Fabrication and Application of Glass-Substrate Microelectrode-Microchannel Chips
2001 - 2001 マイクロチップを用いた高速高感度な内分泌拡散物質および関連物質の分析
1999 - 2001 Single-Microparticle Based Analyses under Solution Flow Conditions
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Papers (48):
Kae Sato, Kiichi Sato. Blood vessels-on-a-chip. Principles of Human Organs-on-Chips. 2023. 167-194
Hidetaka Ueno, Kiichi Sato, Kou Yamada, Takaaki Suzuki. Micropatterning Method for Porous Materials Using the Difference of the Glass Transition Temperature between Exposed and Unexposed Areas of a Thick-Photoresist. Micromachines. 2019. 11. 1. 54-54
Sakuta, Yu, Takehara, Issey, Tsunoda, Kin-ichi, Kiichi, Sato. Development of a Microfluidic System Comprising Dialysis and Secretion Components for a Bioassay of Renal Clearance. ANALYTICAL SCIENCES. 2018. 34. 9. 1073-1078