Rchr
J-GLOBAL ID:200901016476361739   Update date: Nov. 12, 2024

Kawashita Masakazu

KAWASHITA Masakazu | Kawashita Masakazu
Affiliation and department:
Job title: Professor
Homepage URL  (1): http://www.tmd.ac.jp/bcr/
Research field  (2): Biomaterials ,  Inorganic materials
Research keywords  (4): Ceramic biomaterials for cancer treatment ,  Ceramic biomaterials for bone repair ,  Antibacterial ceramic biomaterials ,  Bone-bonding mechanism of hydroxyapatite
Research theme for competitive and other funds  (21):
  • 2022 - 2025 Development of iron nitride microspheres for intra-arterial hyperthermia for liver cancer
  • 2022 - 2024 Development of innovative zirconia artificial bones
  • 2021 - 2023 Proteome analysis of serum proteins adsorbed on hydroxyapatite with controlled crystal orientation
  • 2018 - 2020 Development of iron nitride microspheres for hyperthermia with highly efficient heating, automatic temperature control, and arterial embolization
  • 2016 - 2019 Development of optical funcitional titanium with trace metal-doped titania layer
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Papers (250):
  • Mamiko Kobayashi, Masaya Shimabukuro, Shun Aoki, Ryo Kishida, Masakazu Kawashita. Micro-arc oxidation for balancing antibacterial activity and bone formation on titanium surface. Materials Letters. 2024. 377. 137531-137531
  • Yuejun Wang, Taishi Yokoi, Masaya Shimabukuro, Masakazu Kawashita. Calcium Citrate Amount and Gelatine Source Impact on Hydroxyapatite Formation in Bone Regeneration Material in Simulated Body Fluid. Molecules. 2024. 29. 16. 3925-3925
  • Zhibin Wang, Masaya Shimabukuro, Ryo Kishida, Taishi Yokoi, Masakazu Kawashita. Effects of pH on the microarchitecture of carbonate apatite granules fabricated through a dissolution-precipitation reaction. Frontiers in Bioengineering and Biotechnology. 2024. 12
  • Po-Cheng Sung, Taishi Yokoi, Masaya Shimabukuro, Takayuki Mokudai, Masakazu Kawashita. Apatite-Forming Ability and Visible Light-Enhanced Antibacterial Activity of CuO-Supported TiO2 Formed on Titanium by Chemical and Thermal Treatments. Journal of Functional Biomaterials. 2024
  • 三宅 理沙, 島袋 将弥, 下岸 将博, 丸川 恵理子, 川下 将一. チタン表面に形成したマグネシウム薄膜の劣化挙動と生体機能変化. 日本歯科理工学会誌. 2024. 43. Special Issue82. 88-88
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MISC (76):
  • 橋本雅美, 大矢根綾子, 菊池正紀, 大槻主税, 石川邦夫, 宮崎敏樹, 川下将一. 擬似体液を用いたアパタイト形成能評価に関する国際規格の改定. JFCC研究成果集. 2023. 2023
  • 橋本雅美, 大矢根綾子, 菊池正紀, 大槻主税, 石川邦夫, 宮崎敏樹, 川下将一. Revision of International Standard for Evaluation of Apatite-Forming Ability Using Simulated Body Fluids. 日本セラミックス協会年会講演予稿集(Web). 2023. 2023
  • Masaya Shimabukuro, Taishi Yokoi, Masakazu Kawashita. Antibacterial biomaterials for treatments of infectious diseases in bone and joint area. THE CELL. 2022. 54. 10. 49-51
  • Chikara Ohtsuki, Taishi Yokoi, Masakazu Kawashita. Glass for Healthcare Applications. Ceramics. 2022. 57. 3. 133-136
  • 川下 将一. がん治療用/抗菌性セラミック高機能微粒子の創製. バイオマテリアル - 生体材料. 2022. 40. 1. 12-13
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Patents (19):
  • 生体インプラントおよびその製造方法
  • チタン金属又はチタン合金からなる基体を有する生体インプラントおよびその製造方法
  • 被覆樹脂粒子の製造方法
  • 抗菌性ガラス微小球及びその製造方法
  • 生体適合性材料の製造方法
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Books (19):
  • ガラス工学ハンドブック
    朝倉書店 2022
  • Materials Chemistry of Ceramics
    Springer Singapore 2019
  • Handbook of Sol-Gel Science and Technology
    2018
  • Nanobioceramics for Healthcare Applications
    World Scientific 2017
  • Handbook of Bioceramics and Biocomposites
    Springer 2016
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Lectures and oral presentations  (346):
  • Effects of incorporation of dicarboxylate ions into octacalcium phosphate on a topotactic transformation into hydroxyapatite: Reactivity and morphology
    (The 32nd Symposium & Annual Meeting of the International Society for Ceramics in Medicine (Bioceramics 32) 2022)
  • Ceramic micro- or nano-particles for cancer treatment
    (The 32nd Symposium & Annual Meeting of the International Society for Ceramics in Medicine (Bioceramics 32) 2022)
  • 芳香族ジカルボン酸を導入したリン酸八カルシウムナノ粒子の精密合成
    (日本セラミックス協会第35回秋季シンポジウム 2022)
  • 銀イオン含有電解浴中でのマイクロアーク酸化によるチタン表面上での多孔質酸化物層の形成
    (日本セラミックス協会第35回秋季シンポジウム 2022)
  • 固相反応法と錯体重合法によるチタン含有フェライトナノ粒子の合成と交流磁場中での発熱特性
    (日本セラミックス協会第35回秋季シンポジウム 2022)
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Education (3):
  • 1995 - 1998 Kyoto University Graduate School of Engineering Department of Material Chemistry
  • 1993 - 1995 Kyoto University Graduate School of Engineering Department of Material Chemistry
  • 1989 - 1993 Kyoto University Faculty of Engineering Department of Industrial Chemistry
Professional career (2):
  • 博士(工学) (京都大学)
  • Ph.D. (Kyoto University)
Work history (8):
  • 2019/04 - 現在 Tokyo Medical and Dental University Institute of Biomaterials and Bioengineering, Division of Biomedical Materials, Department of Inorganic Biomaterials Professor
  • 2008/10 - 2019/03 Tohoku University Graduate School of Biomedical Engineering Associate Professor
  • 2007/11 - 2008/09 Tohoku University Center for Research Strategy and Support Associate Professor
  • 2007/04 - 2007/10 Kyoto University Graduate School of Engineering Photonics and Electronics Science and Engineering Center Lecturer
  • 2004/04 - 2007/03 Kyoto University Ion Beam Engineering Experimental Laboratory, Graduate School of Engineering Lecturer
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Committee career (17):
  • 2020 - 現在 日本歯科理工学会 関東地方会理事、英文誌編集委員会委員、教育検討委員会委員
  • 2019 - 現在 イオン工学振興財団 評議員
  • 2007 - 現在 日本セラミックス協会 生体関連材料部会幹事
  • 2006 - 現在 ニューセラミックス懇話会 バイオ関連セラミックス分科会委員
  • 1999 - 現在 日本バイオマテリアル学会 評議員
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Awards (7):
  • 2021/11 - The Japanese Society for Biomaterials The Award of Japanese Society for Biomaterials (in science field) Development of high functional ceramic particles for cancer therapy or antibacterial application
  • 2019/06 - 日本セラミックス協会 2018JCS-Japan優秀総説賞 Development and evaluation of the properties of functional ceramic microspheres for biomedical applications
  • 2017/06 - The Ceramic Society of Japan 71st CerSJ Awards for academic achievements in ceramic science and technology Development and evaluation of the properties of functional ceramic microspheres for biomedical applications
  • 2008/11 - ABC Organizing Committee 2008 Asian BioCeramics Symposium Award 2008 Effect of Particle Size on Magnetic Property and Heat-generating Ability of Magnetite Nanoparticles for Hyperthermia of Cancer
  • 2005/10 - ABC Organizing Committee 2005 Asian BioCeramics Symposium Award 2005 Apatite-Forming Ability of Polyethylene Substrates Irradiated by Cluster Ion Beams
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Association Membership(s) (7):
The Japanese Society for Dental Materials ,  The Japan Institute of Metals and Materials ,  Japan Society of Powder and Powder Metallurgy ,  The Chemical Society of Japan ,  ニューセラミックス懇話会 ,  The Japanese Society for Biomaterials ,  The Ceramic Society of Japan
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