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J-GLOBAL ID:201901015120448717   Update date: Feb. 02, 2025

Saito Masato

Saito Masato
Affiliation and department:
Research field  (2): Nano/micro-systems ,  Applied biofunctional and bioprocess engineering
Research keywords  (2): Biosensor ,  Biochip
Research theme for competitive and other funds  (6):
  • 2021 - 2024 マイクロチップによるT細胞応答検出システムの構築
  • 2020 - 2023 Development of Sensitive digital electrchemiluminescent biosensor using catalytic activity of gold nanoparticles
  • 2018 - 2021 Reaction accerelation and rapid detection by centrifugation-controlled microfluidic thermal convection
  • 2015 - 2020 Development of Digital Bio-Molecular Device and Biomedical Applications
  • 2013 - 2015 Development of the PCR device driven by centrifugation assisted thermal convection
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Papers (125):
  • Shuto Osaki, Masato Saito, Hidenori Nagai, Eiichi Tamiya. Surface Modification of Screen-Printed Carbon Electrode through Oxygen Plasma to Enhance Biosensor Sensitivity. Biosensors. 2024
  • Jonathan C. Briones, Yuga Okui, Wilfred V. Espulgar, JeongHoon Park, Eri Itotagawa, Shohei Koyama, Eiichi Tamiya, Hyota Takamatsu, Masato Saito. The combination of hexagonal microfluidic devices and cell-based reporter cells allows detection of cytokine-producing cells at the single-cell level. Sensors and Actuators B: Chemical. 2023. 393. 134131-134131
  • Shuto Osaki, Wilfred Villariza Espulgar, Masato Saito, Eiichi Tamiya. EIS and Amperometric Analysis of Gold Nanoparticle Probes on the Immunosensor Surface. ECS Meeting Abstracts. 2023. MA2023-01. 48. 2532-2532
  • Yuhei Terada, Ain Obara, Jonathan Campos Briones, Xi Luo, Wilfred Villariza Espulgar, Masato Saito, Hyota Takamatsu, Eiichi Tamiya. Development of Nano-Micro Fused LSPR Chip for In Situ Single-Cell Secretion Analysis. Micromachines. 2023. 14. 7. 1404-1404
  • Jonathan C. Briones, Wilfred V. Espulgar, Shohei Koyama, Hyota Takamatsu, Masato Saito, Eiichi Tamiya. A High-Throughput Single-Cell Assay on a Valve-Based Microfluidic Platform Applied to Protein Quantification, Immune Response Monitoring, and Drug Discovery. Methods in Molecular Biology. 2023. 119-142
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MISC (43):
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