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Showing results 1 to 10 of 10
TypeAuthor(s)TitleOther TitlesCitationCitation(alt)Issue Date
articleMiyata, Saori; Miyaji, Hirofumi; Kawasaki, Hideya; Yamamoto, Masaki; Nishida, Erika; Takita, Hiroko; Akasaka, Tsukasa; Ushijima, Natsumi; Iwanaga, Toshihiko; Sugaya, TsutomuAntimicrobial photodynamic activity and cytocompatibility of Au25(Capt)18 clusters photoexcited by blue LED light irradiation-International Journal of Nanomedicine-4-Apr-2017
articleErika, Nishida; Hirofumi, Miyaji; Junko, Umeda; Katsuyoshi, Kondoh; Hiroko, Takita; Izumi, Kanayama; Saori, Tanaka; Akihito, Kato; Bunshi, Fugetsu; Tsukasa, Akasaka; Masamitsu, KawanamiBiological Response to Nanostructure of Carbon Nanotube/titanium Composite Surfaces-Nano Biomedicine-30-Jun-2015
articleKuboki, Yoshinori; Koshikawa, Takamitu; Takita, Hiroko; Fujisawa, Ryuichi; Lee, Min-ho; Abe, Shigeaki; Akasaka, Tsukasa; Uo, Motohiro; Watari, Fumio; Sammons, RachelChromatography of carbon nanotubes separated albumin from other serum proteins : a method for direct analysis of their interactions-Dental Materials Journal-Jul-2010
articleMiyaji, Hirofumi; Kanayama, Izumi; Takita, Hiroko; Nishida, Erika; Tsuji, Maiko; Fugetsu, Bunshi; Sun, Ling; Inoue, Kana; Ibara, Asako; Akasaka, Tsukasa; Sugaya, Tsutomu; Kawanami, MasamitsuComparative study of bioactivity of collagen scaffolds coated with graphene oxide and reduced graphene oxide-International Journal of Nanomedicine-11-Jul-2014
article (author version)Hirata, Eri; Uo, Motohiro; Takita, Hiroko; Akasaka, Tsukasa; Watari, Fumio; Yokoyama, AtsuroDevelopment of a 3D collagen scaffold coated with multiwalled carbon nanotubes-Journal of Biomedical Materials Research. Part B, Applied Biomaterials-Aug-2009
articleMurakami, Shusuke; Miyaji, Hirofumi; Nishida, Erika; Kawamoto, Kohei; Miyata, Saori; Takita, Hiroko; Akasaka, Tsukasa; Fugetsu, Bunshi; Iwanaga, Toshihiko; Hongo, Hiromi; Amizuka, Norio; Sugaya, Tsutomu; Kawanami, MasamitsuDose effects of beta-tricalcium phosphate nanoparticles on biocompatibility and bone conductive ability of three-dimensional collagen scaffolds-Dental Materials Journal-2017
article (author version)Nishida, Erika; Miyaji, Hirofumi; Takita, Hiroko; Kanayama, Izumi; Tsuji, Maiko; Akasaka, Tsukasa; Sugaya, Tsutomu; Sakagami, Ryuji; Kawanami, MasamitsuGraphene oxide coating facilitates the bioactivity of scaffold material for tissue engineering-Japanese Journal of Applied Physics-Jun-2014
articleNishida, Erika; Miyaji, Hirofumi; Kato, Akihito; Takita, Hiroko; Iwanaga, Toshihiko; Momose, Takehito; Ogawa, Kosuke; Murakami, Shusuke; Sugaya, Tsutomu; Kawanami, MasamitsuGraphene oxide scaffold accelerates cellular proliferative response and alveolar bone healing of tooth extraction socket-International Journal of Nanomedicine-24-May-2016
articleIbara, Asako; Miyaji, Hirofumi; Fugetsu, Bunshi; Nishida, Erika; Takita, Hiroko; Tanaka, Saori; Sugaya, Tsutomu; Kawanami, MasamitsuOsteoconductivity and Biodegradability of Collagen Scaffold Coated with Nano-β-TCP and Fibroblast Growth Factor 2-Journal of Nanomaterials-2013
article (author version)Ogawa, Kosuke; Miyaji, Hirofumi; Kato, Akihito; Kosen, Yuta; Momose, Takehito; Yoshida, Takashi; Nishida, Erika; Miyata, Saori; Murakami, Shusuke; Takita, Hiroko; Fugetsu, Bunshi; Sugaya, Tsutomu; Kawanami, MasamitsuPeriodontal tissue engineering by nano beta-tricalcium phosphate scaffold and fibroblast growth factor-2 in one-wall infrabony defects of dogs-Journal of Periodontal Research-Dec-2016
Showing results 1 to 10 of 10

 

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