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(Last updated : 2024-11-14 12:48:49)
Tanaka Shiyoutarou
Department
School of Medicine, School of Medicine Department of Biochemistry
Position
Assistant Professor
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Published papers
1.
Original article
Exploring the bio-functional break point of living tissue against outside physical pressure 2022/04/20
2.
Original article
One‑step visualization of natural cell activities in non‑labeled living spheroids 2022/01/27
3.
Original article
A method for detailed analysis of the structure of mast cell secretory granules by negative contrast imaging 2016/03
4.
Original article
A novel method to visually determine the intracellular pH of xenografted tumor in vivo by utilizing fluorescent protein as an indicator. 2015/09
5.
Review article
Study of intracellular molecular interaction using fluorescence correlation spectroscopy (FCS) 2015/03
6.
Review article
Recent Development of Live Cell Imaging for Secretory Granules of Mast Cells 2015/01
7.
Original article
Intracellular interactions between protein 4.1 and glycophorin C on transport vesicles, as determined by fluorescence correlation spectroscopy 2012/02
8.
Original article
In vivo imaging of HIF-active tumors by an oxygen-dependent degradation protein probe with an interchangeable labeling system. 2010/12
9.
Original article
Noninvasive tracking of donor cell homing by near-infrared fluorescence imaging shortly after bone marrow transplantation. 2010/06
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Academic conference presentation
1.
Contribution of collagen as a structural element of tissue elucidated by new imaging technology 2023/12/08
2.
Direct observation of stiffness and internal strain in 3D cultured living cells 2024/11/06
3.
The Contribution of Fibronectin to the Mechanical Properties and Strain of 3D Cultured Cell 2024/06/15
4.
Direct observation of stiffness and strain in 3D cultured cells with specific ECM protein genes knocked down 2023/06/24
5.
Fibronectin contributes to increased spheroid stiffness 2022/06/26
6.
Characterization of novel cargo proteins of mast cell secretory granules identified by proteomic analysis. 2020/09/14
7.
Characterization and separation of secretory granules of mast cells based on the cargo protein 2019/09/19
8.
Characterization and separation of secretory granules of mast cells based on the cargo protein 2018/09/24
9.
A novel method for detailed analysis of living cell structure in spheroid 2018/05/25
10.
A novel method for detailed analysis of living cell structure in spheroid 2018/01/19
11.
Characterization and separation of secretory granules of mast cells based on the cargo protein 2017/12/06
12.
A novel method for detailed analysis of living cell structure in spheroid 2017/09/14
13.
Separation and collection of mast cell secretory granules by cell sorter 2017/06/13
14.
A novel method for detailed analysis of living cell structure by GFP-negative contrast imaging 2016/09/29
15.
Characterization and separation of secretory granules of mast cells based on the cargo protein. 2016/09/26
16.
A method for detailed analysis of the structure of mast cell secretory granules by GFP-negative contrast imaging 2016/06/17
17.
Secretory granules of mast cells are equally distributed to the daughter cells in cytokinesis. 2016/05/10
18.
Characterization of secretory granules of mast cells based on the structural information and reference of the cargo protein 2015/12/01
19.
Characterization of secretory granules of mast cells based on the structural information and reference of the binding protein. 2015/05/15
20.
Observation of individual secretory granules in living mast cells using confocal microscopy 2014/12/08
21.
Development of a new imaging method utilizing confocal microscopy for analyzing structural information of secretory granule in living mast cells 2014/10/17
22.
Development of a novel method to observe secretory granule of mast cells 2014/05/12
23.
Development of a novel fluorescent imaging method of intracellular endogenous protein utilizing fluorescent dye-labeled Fab 2013/06/21
24.
Formation of the ternary complex of protein 4.1R, p55 and glycophorin C on the transport vesicles, as determined by fluorescence correlation spectroscopy (FCS). 2012/05/30
25.
Analysis of intrinsically disordered domain in protein 4.1R and 4.1G binding to calmodulin by solution X-ray scattering 2011/06/07
26.
A Fluorescence Correlation Spectroscopy (FCS) study about the self-organization mechanism of membrane skeleton complex conducted by protein 4.1 2010/12/07
27.
Analysis of intracellular movement of transporting vesicles by Fluorescence Correlation Spectroscopy (FCS) 2010/05/19
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Research areas
Cell biology
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Education
1.
1999/04~2002/03
〔Doctoral course〕, Hiroshima University, Completed,
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Rsearch funding number
90380667