
Taiji FURUNO
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- Research Field :
- Physics
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- E-mail :
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- Specific Research Topic :
- Nanobiotechnology, Bioimaging using AFM
Research Description
Fabricating two-dimensional protein arrays on solid surfaces by using biotin-streptavidin linkage, and performing structural evaluation under water using an atomic force microscope. Currently pursuing the method to immobilize live cells or bacteria onto solid surfaces. The studies are oriented towards biochips or protein chips.
Selected Journal Publications
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大石 毅,久保田 真理(2019) ”環境にやさしい抽出法の学生実験への導入 ― ショウノウ単離と機器分析による同定 ―” 慶應義塾大学日吉紀要 自然科学66:19-32
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S. Ohba, M. Tsuchimoto & N. Yamada (2018) Investigation of nitro-nitrito photoisomerization: crystal structures of trans-{2,2’-[ethane-1,2-diylbis(nitrilomethylidyne)]diphenolato}(pyridine/4-methylpyridine) nitrocobalt(III). Acta CrysE74: 1759-1763
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Okamoto M., Nishimura Y., Takahashi M., Chen W.-H. (2018) Synthesis of Short, Needle-Shaped Crystals of TON-Type Zeolite by Addition of Inhibitors of Crystal Growth along the [001] Direction. Cryst Growth Des18:6573-6580
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Furuno T.(2016) Binding properties of a streptavidin layer formed on a biotinylated Langmuir–Schaefer film of unfolded protein. Thin Solid Films604: 40-47
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Chih-Sheng Chuanga & Wataru Takahashi(2015) Weak convergence theorems for families of nonlinear mappings with generalized parameters. Numerical Funct. Anal. Optim.36: 41-54
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Amemiya, S., Hibino, T., Nakano, H., Yamaguchi, M., Kuraishi, R. and Kiyomoto, M. (2015) Development of ciliary bands in larvae of the living isocrinid sea lily Metacrinus rotundus. Acta Zool.96:36-43. Article first published online: 17 OCT 2013 | doi: 10.1111/azo.12049.
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向井知大、大場茂(2014) 「放射線走行・歩行サーベイ測定実験」 慶應義塾大学日吉紀要、自然科学No.55, 1-19
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Furuno T.(2014) Atomic force microscopy study on the unfolding of globular proteinsin the Langmuir films. Thin Solid Films552: 170-179
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Furuno T.(2009) Deposition onto Glass Surface of Two-dimensional Crystal Film of Streptavidin. Hiyoshi Review of Natural Science, Keio University46: 1-11
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Furuno T. (2008) Two-Dimensional Crystal Film of Streptavidin: A Binding Base for Biotinylated Proteins for Protein Device Application. Hiyoshi Review of Natural Science, Keio University44: 1-17