Research theme for competitive and other funds (12):
2024 - 2027 表面ナノ加工により生体接着能を付与した創面被覆用マイクロニードルシート
2022 - 2025 Development of anti-infective nanoparticles with an external stimulation
2019 - 2022 Development of an antibacterial nanomaterial using of a biological essential element
2016 - 2019 Development of antibacterial nano-materials leaving from anaphylaxis
2016 - 2019 Development of stretchable device mimicking deformation of cellular nuclei for exploring specific biomarkers of mechanical stress
2016 - 2019 Development of stretchable sheet mimicking hard tissue for elucidating cellular network in periodontal tissue
2013 - 2016 Development of antibacterial material with reducing cytotoxicity
2008 - 2010 Injectable Nano-Scaffolds, Hydroxyapatite-Polymer Nanocomposite Microsphere, Enhance the Therapeutic Angiogenesis by Cell Transplantation
2007 - 2009 Cell function on nano-surface of hydroxyapatite nanocrystal composite
2004 - 2006 Gene delivery application of the polymer assembly interconnected by hydrogen bonding prepared by using ultra-high pressure
2001 - 2003 The development of novel biomedical material having high intensity and water repellence : the synthesis and analysis of the block copolymer having fluoroethylene and aramid segment
K. Umeda, M. Tachikawa, Y. Azuma, T. Furuzono. In vitro evaluation of antibacterial-induced anaphylactoid reaction for indwelling catheters. Ren. Replace. Ther. 2022. 8. 34. 1-5
Mari Oshita, Koji Umeda, Minami Kataoka, Yoshinao Azuma, Tsutomu Furuzono. Continuous antimicrobial mechanism of dispersible hydroxyapatite nanoparticles doped with zinc ions for percutaneous device coatings. Journal of Biomaterials Applications. 2022. 37. 4. 659-667
Masanori Okada, Mari Oshita, Minami Kataoka, Yoshinao Azuma, Tsutomu Furuzono. Shareability of antibacterial and osteoblastic-proliferation activities of zinc-doped hydroxyapatite nanoparticles in vitro. J. Biomed. Mater. Res.: Part B - Appl. Biomed. 2021. 110. 4. 799-805
M. Okazaki, Y. Azuma, M. Iwasaki, T. Furuzono. Antibacterial coating of titanium-doped hydroxyapatite nanoparticles on a polymer substrate. Func. Mater. Lett. 2021. 14. 4. 2151014-1-6
1993 - 1994 Kagoshima University Faculty of Medicine
1991 - 1993 鹿児島大学大学院 工学研究科修士課程
1990 - 1991 Kagoshima University
1984 - 1984 鹿児島大学大学院 農学研究科 修士課程
1980 - 1984 鹿児島大学 農学部 農学科
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Professional career (2):
博士(工学) (鹿児島大学)
博士(医学) (大阪大学)
Work history (6):
2010 - 現在 Kindai University Faculty of Biology-Oriented Science and Technology, Department of Biomedical Engineering
2000 - 2010 国立循環器病センター研究所 研究室長
2001 - 2004 Japan Science and Technology Agency PRESTO Researcher
1999 - 2000 無機材質研究所 NEDO提案公募研究員
1997 - 1999 蚕糸・昆虫農業研究所 COE特別研究員
1996 - 1997 ワシントン大学 バイオエンジニアリングセンター 客員研究員
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Association Membership(s) (8):
THE CERAMIC SOCIETY OF JAPAN
, THE JAPANESE SOCIETY FOR BIOMATERIALS
, JAPANESE SOCIETY FOR ARTIFICIAL ORGANS
, THE JAPANESE SOCIETY FOR DIALYSIS THERAPY
, The Asia-Pacific Society for Artificial Organs
, Japanese Society for Medical and Biological Engineering
, 日本医工学治療学会
, 日本在宅血液透析学会