Representative references for preparing research
proposals that you will conduct at Ohtsuki laboratory
Research
Group of Functional Materials
Chemistry,
Laboratory
of Solid State Chemistry,
Department
of Materials Chemistry,
Please
find some of articles listed below for preparing research proposal.
Papers in 2021-2026.
1)
Ryohei Kozaki, Yuko
Matsukawa*, Kazumasa Suzuki, Jin Nakamura*, and Chikara Ohtsuki*,
gRelease of phosphate and phosphonate from phenylphosphonate
modified zirconium phosphate in biomimetic solutionh, Journal of the Ceramic
Society of Japan, 134 [3], 148-143 (2026). (DOI: https://doi.org/10.2109/jcersj2.25147)
2)
Wanyu Dong,Yuko Matsukawa,Taishi
Yokoi,KazumasaSuzuki*, and ChikaraOhtsuki, gSurface structural change on pellets of
calcium ethyl phosphate in biomimetic solutions:Effectsof
carbonateconcentrationsh, Journal of the Ceramic Society
of Japan, 134 [3], 140-147 (2026). (DOI: https://doi.org/10.2109/jcersj2.25142)
3)
Wanyu Dong*, Yuko Matsukawa, Taishi Yokoi, Kazumasa
Suzuki* and Chikara Ohtsuki*, gStructural Changes in
Pellets of Calcium Phosphate Ester Salts after Exposure to Simulated Body Fluid
with the Addition of Alkaline Phosphataseh, ASC Omega, 10, 51197-51204 (2025). (DOI: https://doi.org/10.1021/acsomega.5c06125)
4)
Wanyu Dong*, Yuko Matsukawa*, Yanglifu Long, Yoshinao Hayashi, Jin Nakamura, Kazumasa Suzuki and Chikara
Ohtsuki*, gRevised method for preparation of simulated body
fluid for assessment of the apatite-forming ability of bioactive materials:
proposal of mixing two stock solutionsh, RSC Advances, 14, 38660-38667 (2024). (DOI: 10.1039/D4RA07739C)
5)
Taishi Yokoi*, Shinji Tomita, Jin
Nakamura, Ayae Sugawara-Narutaki, Yuko Matsukawa, Masakazu
Kawashita and Chikara Ohtsuki, gApatite Formation on
ƒ¿-Tricalcium Phosphate Modified with Bioresponsive
Ceramics in Simulated Body Fluid Containing Alkaline Phosphataseh, Biomimetics, 9(8), 502 (2024). (DOI:
10.3390/biomimetics9080502)@
6)
Jin Nakamura*, Hina Kato, Toshiki Miyazaki and Chikara
Ohtsuki, gLoading of antibiotic molecules into organically modified layered
calcium silicateh, Journal of Asian Ceramic Societies, 12(3), 227–233 (2024). (DOI:10.1080/21870764.2024.2352202.)
7)
Taishi Yokoi*, Akiyoshi Mio, Jin Nakamura, Ayae Sugawara-Narutaki, Masakazu Kawashita and
Chikara Ohtsuki, gTransformation behaviour
of salts composed of calcium ions and phosphate esters with different linear
alkyl chain structures in a simulated body fluid modified with alkaline
phosphatase", Science and Technology of Advanced Materials, 23, 341-351 (2022).@iDOI:@https://doi.org/10.1080/14686996.2022.2074801j@
8)
Jin Nakamura*, Ryoya Ito, Ryohei Kozaki, Ayae
Sugawara-Narutaki and Chikara Ohtsuki*,
gOrganic modification of layered zirconium phosphate/phosphonate for controlled
release of therapeutic inorganic ionsh, Science and Technology of Advanced
Materials, 22 [1], 1000-1012 (2021). (DOI: https://doi.org/10.1080/14686996.2021.1993728)
9)
Jin
Nakamura, Yuna Suzuki, Ryosuke Narukawa, Ayae
Sugawara-Narutaki and Chikara Ohtsuki,
gPreparation of layered calcium silicate organically modified with two types of
functional groups for varying chemical stabilityh, Journal of Asian Ceramic
Societies, 9,
113-123 (2021). (doi: 10.1080/21870764.2020.1854925)
Papers in 2001-2020.
1)
Jin
Nakamura, Kanta Endo, Ayae Sugawara-Narutaki and Chikara Ohtsuki, gHuman
stem cell response to layered zirconium phosphateh, RSC Advances, 10,
36051-36057 (2020). (doi: 10.1039/d0ra04924g)
2)
Jian
Wen, Ill Yong Kim, Koichi Kikuta and Chikara Ohtsuki,
gFabrication of Porous ƒ¿-TCP/Gellan Gum Scaffold for Bone Tissue Engineeringh, Journal of Nanoscience and Nanotechnology,
16, 3077-3083 (2016). (doi: 10.1166/jnn.2016.12463)
3)
, , , ,
and Hydroxyapatite formation on oxidized
cellulose nanofibers in a solution mimicking body fluidPolymer Journal, 47,
158-163 (2015). (doi: 10.1038/pj.2014.127)
4)
Taishi Yokoi, Masakazu Kawashita and
Chikara Ohtsuki, gBiomimetic mineralization of
calcium phosphates in polymeric hydrogels containing carboxyl groupsh, Journal of Asian Ceramic Societies, 1 [2], 155–162 (2013).
(doi:
10.1016/j.jascer.2013.04.003)
5)
Ill
Yong Kim, Ryota Iwatsuki, Koichi Kikuta, Yumi Morita, Toshiki Miyazaki and
Chikara Ohtsuki, gThermoreversible behavior of ƒÈ-carrageenan and its apatite-forming ability in
simulated body fluidh, Materials Science and Engineering: C, 31,
1472-1476 (2011). (doi:
10.1016/j.msec.2011.05.015)
6)
Mi-Young Koh, Masanobu Kamitakahara,
Ill-Yong Kim, Koichi Kikuta and Chikara Ohtsuki, gIn
vitro apatite formation on organic-inorganic hybrids in the CaO-SiO2-PO5/2-poly(tetramethylene oxide) systemh, Journal of Materials
Science: Materials in Medicine, 21,
385-392 (2010). (doi: 10.1007/s10856-009-3868-0)
7)
Chikara Ohtsuki, Toshiki Miyazaki and Masao Tanihara, gDevelopment
of bioactive organic-inorganic hybrid for bone substitutesh, Materials Science and Engineering: C, 22 [1], 27-34 (2002). (
doi:
10.1016/S0928-4931(02)00109-1)
8)
Kanji Tsuru, Masaaki Kubo, Satoshi Hayakawa, Chikara Ohtsuki and Akiyoshi Osaka, gKinetics of Apatite Deposition
of Silica Gel Dependent on the Inorganic Ion Composition of Simulated Body
Fluidsh, Journal of the Ceramic Society
of Japan, 109 [5] (No.1269),
412-418 (2001).
Reviews
1)
Chikara
Ohtsuki, gDevelopment of highly functionalized ceramic biomaterialsh, Journal
of the Ceramic Society of Japan, 121 [2] (#1410), 129-134 (2013). (doi:
10.2109/jcersj2.121.129)
2)
Chikara Ohtsuki, Toshiki Miyazaki, Masanobu Kamitakahara
and Masao Tanihara, gDesign of novel bioactive materials through organic modification of calcium silicateh, Journal of the European Ceramic
Society, 27, 1527–1533 (2007). (doi:
10.1016/j.jeurceramsoc.2006.04.018)
3)
Chikara Ohtsuki, Masanobu Kamitakahara
and Toshiki Miyazaki, gCoating bone-like apatite onto organic substrates using
solutions mimicking body fluidh, Journal
of Tissue Engineering and Regenerative Medicine, 1,
33-38 (2007). (doi: 10.1002/term.3)
Books
1)
Taishi
Yokoi, Jin Nakamura and Chikara Ohtsuki, gIncorporation behavior and biomedical
applications of inorganic-layered compoundsh, in Bioceramics:
From Macro to Nanoscale, Ed. by A. Osaka and R. Narayan, Elsevier, 2021,
pp.139-158. (ISBN-13: 978-0081-29992).
2)
Jin
Nakamura, Ayae Sugarawara-Narutaki
and Chikara Ohtsuki, gBioactive ceramics: Past and futureh, in Bioceramics: From Macro to Nanoscale, Ed. by A.Osaka and R.Narayan, Elsevier, 2021, pp. 377-388. (ISBN-13:
978-0081-29992).
3)
Ayae Sugarawara-Narutaki, Jin
Nakamura and Chikara Ohtsuki, gPolymer-induced liquid precursors (PILPs) and
bone regenerationh, in Bioceramics: From
Macro to Nanoscale, Ed. by A. Osaka and R. Narayan, Elsevier, 2021, pp.
391-398. (ISBN-13: 978-0081-29992).
4)
Toshiki
Miyazaki, Masanobu Kamitakahara and Chikara Ohtsuki,
gChapter 16. Development of Bioactive Organic-Inorganic Hybrids Through Sol-Gel
Processingh, in Hybrid Nanocomposites for Nanotechnology, Ed. by L. Merhari, Springer, Boston, MA, United
States, 2009, pp. 769-793.
5)
Masanobu
Kamitakahara, Toshiki Miyazaki and Chikara Ohtsuki, "11. Design of
Bioactive Nano-hybrids for Bone Tissue Regeneration", in Bio-inorganic
Hybrids Nanomaterials, Strategies, Syntheses, Characterization and Application,
Ed. by E. Ruiz-Hitzky, K. Ariga and Y. Lvov,
Wiley-VCH Verlag Gmbh & Co. KGaA, Weinhein, 2008, pp. 339-366.
6)
Chikara
Ohtsuki, gChapter 22, Ceramic-polymer compositesh, in Bioceramics
and their clinical applications, Ed. by Tadashi Kokubo, Woodhead Publishing
Limited, Cambridge, England, 2008, pp. 501-517.