Curriculum Vitaes
Profile Information
- Affiliation
- Professor, Faculty of Science and Technology, Department of Materials and Life Sciences, Sophia University
- Degree
- PhD(Mar, 1996, Chiba University)
- Researcher number
- 40286761
- J-GLOBAL ID
- 200901047892599780
- researchmap Member ID
- 1000212244
(Subject of research)
Investigation of the Mechanism of Plant Nastic Movement.
Biochemical evaluation of a novel apatite fiber scaffold.
Major Research Interests
7Research Areas
2Research History
8-
Apr, 2020 - Mar, 2021
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Apr, 2015 - Mar, 2019
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Apr, 2006 - Mar, 2009
Education
3-
Apr, 1993 - Mar, 1996
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Apr, 1991 - Mar, 1993
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Apr, 1987 - Mar, 1991
Committee Memberships
3-
Apr, 2018 - Mar, 2019
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Apr, 2018 - Mar, 2019
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Apr, 2015 - Mar, 2018
Papers
111-
Journal of biomedical materials research. Part B, Applied biomaterials, 112(6) e35433, Jun, 2024 Peer-reviewedCorresponding authorEx vivo tissue engineering is an effective therapeutic approach for the treatment of severe cartilage diseases that require tissue replenishment or replacement. This strategy demands scaffolds that are durable enough for long-term cell culture to form artificial tissue. Additionally, such scaffolds must be biocompatible to prevent the transplanted matrix from taking a toll on the patient's body. From the viewpoint of structure and bio-absorbability, a β-tricalcium phosphate (β-TCP) fiber scaffold (βTFS) is expected to serve as a good scaffold for tissue engineering. However, the fragility and high solubility of β-TCP fibers make this matrix unsuitable for long-term cell culture. To solve this problem, we developed an alginate-coated β-TCP fiber scaffold (βTFS-Alg). To assess cell proliferation and differentiation in the presence of βTFS-Alg, we characterized ATDC5 cells, a chondrocyte-like cell line, when grown in this matrix. We found that alginate coated the surface of βTFS fiber and suppressed the elution of Ca2+ from β-TCP fibers. Due to the decreased solubility of βTFS-Alg compared with β-TCP, the former provided an improved scaffold for long-term cell culture. Additionally, we observed superior cell proliferation and upregulation of chondrogenesis marker genes in ATDC5 cells cultured in βTFS-Alg. These results suggest that βTFS-Alg is suitable for application in tissue culture.
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Materialia, 32 101926-101926, Dec, 2023 Peer-reviewed
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Crystals, 13(9) 1318-1318, Aug 29, 2023 Peer-reviewedProtein adsorption is essential for determining material biocompatibility and promoting adherent cell growth. In this study, we focused on the a-plane structure of hydroxyapatite (HAp). This a-plane structure closely resembles the crystal plane where apatite is exposed in long bones. We conducted protein adsorption experiments using HAp ceramics with a preferred orientation to a-planes (aHAp), employing bovine serum albumin (BSA), lysozyme, and fetal bovine serum (FBS) as protein models to mimic the in vivo environment. Higher zeta potential and contact angle values were found in aHAp than in HAp ceramics fabricated from commercial HAp powder (iHAp). Bradford-quantified protein adsorption revealed BSA adsorption of 212 ng·mm−2 in aHAp and 28.4 ng mm−2 in iHAp. Furthermore, the Bradford-quantified protein adsorption values for FBS were 2.07 μg mm−2 in aHAp and 1.28 µg mm−2 in iHAp. Two-dimensional electrophoresis (2D-PAGE) showed a higher number of protein-derived major spots in aHAp (37 spots) than in iHAp (12 spots). Mass spectrometry analysis of the resulting 2D-PAGE gels revealed proteins adsorbed on aHAp, including secreted frizzled-related protein 3 and vitamin K epoxide reductase complex 1, which are involved in cellular bone differentiation. Overall, these proteins are expected to promote bone differentiation, representing a characteristic property of aHAp.
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Molecules, 28(4) 1704, Feb, 2023 Peer-reviewed
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ACS Applied Bio Materials, Nov 1, 2022 Peer-reviewed
Misc.
24-
日本セラミックス協会年会講演予稿集(Web), 2022, 2022
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日本セラミックス協会秋季シンポジウム講演予稿集(Web), 35th, 2022
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無機マテリアル学会学術講演会講演要旨集, 145th, 2022
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ホスト-ゲスト・超分子化学シンポジウム講演要旨集, 19th, 2022
Books and Other Publications
5-
Elsevier Academic Press, Jan 3, 2013 (ISBN: 9780123822192)
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Humana Press, Jan, 2005 (ISBN: 1588292010)
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CRC Press, Mar, 2004 (ISBN: 0849314879)
Presentations
55-
Bioceramics31, Nov, 2019
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Bioceramics31, Nov, 2019
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2016 International Congress for Innovation in Chemistry, Jun, 2016 Invited
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10th World Biomaterials Congress (WBC), May, 2016
Professional Memberships
7-
Apr, 2021 - Present
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Apr, 2015 - Present
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Apr, 2006 - Present
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Apr, 2004 - Present
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Apr, 2004 - Present
Research Projects
16-
Grants-in-Aid for Scientific Research Grant-in-Aid for Scientific Research (B), Japan Society for the Promotion of Science, Apr, 2020 - Mar, 2024
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産学が連携した研究開発成果の展開 研究成果展開事業 研究成果最適展開支援プログラム(A-STEP) トライアウト トライアウトタイプ(標準), 2021 - 2021
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Grants-in-Aid for Scientific Research Grant-in-Aid for Scientific Research (C), Japan Society for the Promotion of Science, Apr, 2014 - Mar, 2016
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科学研究費助成事業 新学術領域研究(研究領域提案型), 日本学術振興会, Apr, 2014 - Mar, 2016
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私立大学戦略的研究基盤形成支援事業, 文部科学省, Apr, 2011 - Mar, 2016