2026

  1. Masanori Kikuchi, Taku Yoshida, Yasushi Suetsugu, Akiko Yamamoto, Preparation and Antibacterial Activities of Silver Nanoparticle-Loaded Hydroxyapatite/Collagen Bone-Like Nanocomposite, Scientific Reports, 16, Article ID 24842, 12 pages, DOI:10.1038/s41598-026-54878-2 (2026)
  2. Hanae Arai, Masayoshi Uezono, Masanori Kikuchi, Hitoshi Amano, Chen Derong, Kazuhiro Aoki, Keiji Moriyama, Rapid Bone Formation and Remodeling Via Vascular Infiltration of a Hydroxyapatite/Collagen Nanocomposite Beneath the Calvarial Periosteum, Biomaterials and Biosystems, 21, Article ID 100130, 10 pages, DOI:10.1016/j.bbiosy.2026.100130 (2026)
  3. Akiko Yamamoto, Masanori Kikuchi, Yasushi Suetsugu, Enhancement of Copper Antiviral Activity with Glutathione Treatment, Acs Applied Bio Materials, , pages, DOI:10.1021/acsabm.6c00520 (2026)
  4. Akiko Yamamoto, Yuki Ito. Effect of Humidity on Antibacterial Activity of Copper and Its Alloy Surfaces. MATERIALS TRANSACTIONS. 67 [1] (2026) MT-M2025099 10.2320/matertrans.mt-m2025099
  5. 菊池正紀, セラミックス系生体材料に関する日本発国際標準化の動向/Trends in International Standardization of Ceramics Biomaterials Proposed from Japan, 無機マテリアル学会誌,(掲載決定)

2025

  1. Mako Sakakibara, Tomoka Hasegawa, Mai Haraguchi-Kitakamae, Yan Shi, Weisong Li, Jiaxin Cui, Xuanyu Liu, Tomomaya Yamamoto, Hiromi Hongo,, Norio Amizuka, Yoshiaki Sato, Masanori Kikuchi, Histochemical Analysis of Osteoclast and Osteoblast Distributions on Hydroxyapatite/Collagen Bone-Like Nanocomposite Embedded in Rat Tibiae, Journal of Oral Biosciences, 67(1), Article ID 100612, 10 pages, DOI:10.1016/j.job.2025.100612 (2025)
  2. Manas Ranjan Sahu, Akiko Yamamoto. Effect of diffusion in the model tissue on biocorrosion of Mg alloys. Colloids and Surfaces B: Biointerfaces. 251 (2025) 114621 10.1016/j.colsurfb.2025.114621
  3. Nilesh K. Kumbhar, Akiko Yamamoto, Khandu Wadhonkar, Mirza S. Baig, Santosh S. Hosmani. The effect of severe surface deformation on microstructure refinement, corrosion, and biocompatibility of Mg5Zn0.2Ca alloy. Journal of Alloys and Compounds. 1010 (2025) 178259 10.1016/j.jallcom.2024.178259
  4. Yazan Al-Zain, Masanari Sakato, Akiko Yamamoto, Jihad M. AlAjlouni, Mousa A. Al-Abbadi, Abdelkarim S. Aloweidi, Hee Young Kim. Balancing strength, modulus, and biocompatibility in a novel oxygen-containing β-type titanium alloy. Journal of Materials Research and Technology. 39 (2025) 7613-7625 10.1016/j.jmrt.2025.11.120
  5. Manas Ranjan Sahu, Akiko Yamamoto. An overview of the recent developments in biodegradable Mg-Zn alloy. Journal of Magnesium and Alloys. 13 [2] (2025) 486-509 10.1016/j.jma.2025.01.011
  6. Manas Ranjan Sahu, Akiko Yamamoto. Investigating the Effect of Thickener Concentrations on the Corrosion Behavior of Pure Mg. Journal of Biomedical Materials Research Part A. 113 [2] (2025) e37878 10.1002/jbm.a.37878
  7. 山本 玲子. 生体吸収性金属材料の分解特性評価技術(第2章10節). 界面制御による革新的生体適合性材料開発. 株式会社エヌ・ティー・エス, 2025, 10.

2024

  1. Taira Sato, Yuki Shirosaki, Sho Oshima, Kanji Tsuru, Yoshihisa Koyama, Mamoru Aizawa, Masanori Kikuchi, Initial Bone Tissue Reactions of Hydroxyapatite/Collagen–(3-Glycidoxypropyl)trimethoxysilane Injectable Bone Paste, Journal of Biomedical Materials Research Part B: Applied Biomaterials, 112(8), Article ID e35451, 9 pages, DOI:10.1002/jbm.b.35451 (2024)
  2. Jyorthana Rajappa Muralidhar, Kabilan Sakthivel, Madanagurusamy Sridharan, Masanori Kikuchi, Influence of Electrical Polarization on Thrombogenicity of Titania Nanotubes, International Journal of Ceramic Engineering and Science, 6(3), Article ID e10214, 9 pages, DOI:10.1002/ces2.10214 (2024)
  3. J. Idaszek, B. Wysocki, E. Ura-Bińczyk, A. Dobkowska, W. Nowak, A. Yamamoto, G.D. Sulka, W. Święszkowski. Graded or random – Effect of pore distribution in 3D titanium scaffolds on corrosion performance and response of hMSCs. Biomaterials Advances. 163 (2024) 213955 10.1016/j.bioadv.2024.213955
  4. Sho Torii, Akiko Yamamoto, Ayako Yoshikawa, Linhai Lu, Makoto Sasaki, Shoko Obuchi, Akira Wada, Hideo Tsukamoto, Gaku Nakazawa. Degradation of a novel magnesium alloy-based bioresorbable coronary scaffold in a swine coronary artery model. Cardiovascular Intervention and Therapeutics. 39 [4] (2024) 428-437 10.1007/s12928-024-01023-3
  5. Yu Yusa, Yoshinaka Shimizu, Masanobu Hayashi, Takayuki Aizawa, Takahiro Nakahara, Takahiro Ueno, Akimitsu Sato, Chieko Miura, Akiko Yamamoto, Yoshimichi Imai. Effect of hematoma on early degradation behavior of magnesium after implantation. Biomedical Materials. 19 [5] (2024) 055043 10.1088/1748-605x/ad7085
  6. Masanobu Hayashi, Akiko Yamamoto, Takayuki Aizawa, Yu Yusa, Yoshinaka Shimizu, Yoshimichi Imai. In vitro analysis of insoluble salt formation mechanism associated with Mg corrosion—variations depending on the diffusion environment in model tissue. Biomedical Materials. 19 [2] (2024) 025010 10.1088/1748-605x/ad1d7f

2022

  1. Zahiruddeen Salam Zahari, Dayangku Noorfazidah Awang Shri, Akiko Yamamoto. Investigation of mechanical properties and in vitro corrosion of bulk nanostructured metal produced by equal channel angular pressing. AIP Conference Proceedings. 2454 [1] (2022) 060037 10.1063/5.0078675
  2. Akiko Yamamoto, Akemi Kikuta. Development of a Model System for Gas Cavity Formation Behavior of Magnesium Alloy Implantation. ACS Biomaterials Science & Engineering. 8 [6] (2022) 2437-2444 10.1021/acsbiomaterials.1c01429
  3. Kyong Min Kim, Yazan Al-Zain, Akiko Yamamoto, Amirah H. Daher, Ahmad T. Mansour, Jihad M. AlAjlouni, Abdelkarim S. Aloweidi, Mousa A. Al-Abbadi, Hee Young Kim, Shuichi Miyazaki. Synthesis and Characterization of a Ti–Zr‐Based Alloy with Ultralow Young's Modulus and Excellent Biocompatibility. Advanced Engineering Materials. 24 [2] (2022) 2100776 10.1002/adem.202100776
  4. 菊池正紀, 第1章バイオマテリアルの概要 2節 セラミック系バイオマテリアル, 製品利用に向けたバイオマテリアル開発の基本事項と注意点, (株)情報機構, 東京, 15-24, 2022

2021

  1. 菊池正紀, アパタイトの基礎と応用 / Improvement of Functions and Novel Developments of Apatitic Calcium Phosphate Biomaterials, New Glass, 36, 3-6 (2021)
  2. 菊池正紀, ISO/TC 150の活動について, モダンメディア, 67(7), 48-49 (2021)
  3. Chenning Zhang, Tetsuo Uchikoshi, Lihong Liu, Kaori Iwanami-Kadowaki, Masayoshi Uezono, Keiji Moriyama, Masanori Kikuchi, Antibacterial-Functionalized Ag Loaded-Hydroxyapatite (HAp) Coatings Fabricated by Electrophoretic Deposition (EPD) Process, Materials Letters, 297, Article ID 129955, 4 pages, DOI:10.1016/j.matlet.2021.129955 (2021)
  4. Kaori Iwanami-Kadowaki, Tetsuo Uchikoshi, Masayoshi Uezono, Masanori Kikuchi, Keiji Moriyama, Development of Novel Bone-Like Nanocomposite Coating of Hydroxyapatite/Collagen on Titanium by Modified Electrophoretic Deposition, Journal of Biomedical Materials Research, 109(10), 1905-1911, DOI:10.1002/jbm.a.37182 (2021)
  5. Kenji ODASHIMA, Yoshinaka SHIMIZU, Yuya SANO, Akiko YAMAMOTO, Toshiji MUKAI, Yukyo TAKADA, Yuta YANAGISAWA, Yoshimichi IMAI, Tetsu TAKAHASHI, Hiroyuki KUMAMOTO. Osteogenic response under the periosteum by magnesium implantation in rat tibia. Dental Materials Journal. 40 [2] (2021) 498-507 10.4012/dmj.2020-011
  6. Akiko Yamamoto, Shinji Tanaka, Keiichiro Ohishi. Quantitative Evaluation of Nucleic Acid Degradability of Copper Alloy Surfaces and Its Correlation to Antibacterial Activity. Antibiotics. 10 [12] (2021) 1439 10.3390/antibiotics10121439
  7. Dayangku Noorfazidah Awang Sh’ri, Zahiruddeen Salam Zahari, Akiko Yamamoto. Effect of ECAP Die Angle on Mechanical Properties and Biocompatibility of SS316L. Metals. 11 [10] (2021) 1513 10.3390/met11101513
  8. N. Hashimoto, Y. Al-Zain, A. Yamamoto, T. Koyano, H.Y. Kim, S. Miyazaki. Novel beta-type high entropy shape memory alloys with low magnetic susceptibility and high biocompatibility. Materials Letters. 287 (2021) 129286 10.1016/j.matlet.2020.129286
  9. 菊池正紀, 末次寧, アパタイト系リン酸カルシウム生体材料の高機能化と新展開 / Improvement of Functions and Novel Developments of Apatitic Calcium Phosphate Biomaterials, セラミックス, 56(3), 124-127 (2021)

2020

  1. Chenning Zhang, Tetsuo Uchikoshi, Lihong Liu, Masanori Kikuchi, Izumi Ichinose, Effect of Surface Modification with Tio2 Coating on Improving Filtration Efficiency of Whisker-Hydroxyapatite (HAp) Membrane, Coatings, 10(7), 670, DOI:10.3390/coatings10070670 (2020)
  2. Masanori KIKUCHI, Developments of Calcium Phosphate-Based Bone Regenerating Materials Utilizing Interfacial Interactions Between Inorganic–organic Substances, Journal of The Ceramic Society of Japan, 128(8), 547-554, DOI:10.2109/jcersj2.20093 (2020)
  3. Masanori Kikuchi, Yuki Arioka, Masamoto Tafu, Mitsuteru Irie, Changes in Fluoride Removal Ability of Chicken Bone Char with Changes in Calcination Time, International Journal of Ceramic Engineering & Science, 2(2), 83-91, DOI:10.1002/ces2.10034 (2020)
  4. 上園 将慶, 高久田 和夫, 菊池 正紀, 森山 啓司, ハイドロキシアパタイト/コラーゲンナノ複合体を用いた表面改質によって金属材料を骨の表面に迅速に接合させる技術の確立 / Rapid Bone Induction Around Subperiosteal Device by Surface Treatment of Hydroxyapatite/Collagen Nano-Composite, セラミックス, 55(3), 155-157 (2020)
  5. Chenning Zhang, Tetsuo Uchikoshi, Lihong Liu, Masanori Kikuchi, Izumi Ichinose, Nest-Like Microstructured Biocompatible Membrane Fabricated by Hydrothermally-Synthesized Hydroxyapatite (HAp) Whiskers, Journal of The European Ceramic Society, 40(2), 513-520, DOI:10.1016/j.jeurceramsoc.2019.09.032 (2020)
  6. Taizo Hiratsuka, Masayoshi Uezono, Kazuo Takakuda, Masanori Kikuchi, Sho Oshima, Taira Sato, Shoichi Suzuki, Keiji Moriyama, Enhanced Bone Formation onto the Bone Surface Using a Hydroxyapatite/Collagen Bone-Like Nanocomposite, Journal of Biomedical Materials Research Part B-Applied Biomaterials, 108B, 391-398, DOI:10.1002/jbm.b.34397 (2020)
  7. Sho Oshima, Taira, Sato, Michiyo Honda, Yasushi Suetsugu, Kazuhide Ozeki, Masanori Kikuchi, Fabrication of Gentamicin-Loaded Hydroxyapatite/Collagen Bone Like Nanocomposite for Anti-Infection Bone Void Fillers, International Journal of Molecular Sciences, 21(2), Article ID 551, 551-1-551-10, DOI:10.3390/ijms21020551 (2020)
  8. 山本 玲子. 材料―組織間の相互作用の理解に基づく生体吸収性金属材料の生体内分解特性評価. まてりあ. 59 [11] (2020) 600-605 10.2320/materia.59.600
  9. M. R. Mahundla, W. R. Matizamhuka, A. Yamamoto, M. B. Shongwe, R. Machaka. Corrosion Behaviour of Ti–34Nb–25Zr Alloy Fabricated by Spark Plasma Sintering. Journal of Bio- and Tribo-Corrosion. 6 [2] (2020) 10.1007/s40735-020-0332-7

2019

  1. Akari Takeuchi, Takuma Hikita, Hiroko Hamano, Masamoto Tafu, Masanori Kikuchi, Search for Novel Use of Waste Gypsum: Part 1. Detailed Investigation on Waste Gypsum Phosphatization, Ceramics in Modern Technologies, 1(3), Article ID cmt.2019.0013, 189, DOI:10.29272/cmt.2019.0013 (2019)
  2. Chenning Zhang, Tetsuo Uchikoshi, Lihong Liu, Masanori Kikuchi, Controllable Design of Various Microstructures for Hydroxyapatite Coatings by Electrophoresis Deposition Process for Biomedical Applications, Journal of The Electrochemical Society, 166 (13), D700-D706, DOI:10.1149/2.0061914jes (2019)
  3. Takumi SATO, Yoshinaka SHIMIZU, Kenji ODASHIMA, Yuya SANO, Akiko YAMAMOTO, Toshiji MUKAI, Naoko IKEO, Tetsu TAKAHASHI, Hiroyuki KUMAMOTO. In vitro and in vivo analysis of the biodegradable behavior of a magnesium alloy for biomedical applications. Dental Materials Journal. 38 [1] (2019) 11-21 10.4012/dmj.2017-324
  4. Yazan Al-Zain, Akiko Yamamoto, Jihad M. AlAjlouni, Mousa A. Al-Abbadi, Manar R. Al-Sayyed, Abdelkarim S. Aloweidi, Hee Young Kim, Shuichi Miyazaki. Corrosion behavior, in vitro and in vivo biocompatibility of a newly developed Ti–16Nb–3Mo–1Sn superelastic alloy. Materials Science and Engineering: C. 104 (2019) 109906 10.1016/j.msec.2019.109906
  5. Kicheol Hong, Hyeji Park, Yunsung Kim, Michal Knapek, Peter Minárik, Kristián Máthis, Akiko Yamamoto, Heeman Choe. Mechanical and biocorrosive properties of magnesium-aluminum alloy scaffold for biomedical applications. Journal of the Mechanical Behavior of Biomedical Materials. 98 (2019) 213-224 10.1016/j.jmbbm.2019.06.022
  6. Dorota Kubacka, Akiko Yamamoto, Piotr Wieciński, Halina Garbacz. Biological behavior of titanium processed by severe plastic deformation. Applied Surface Science. 472 (2019) 54-63 10.1016/j.apsusc.2018.04.120
  7. Hyeji Park, Kicheol Hong, Jin Soo Kang, Teakyung Um, Michal Knapek, Peter Minárik, Yung-Eun Sung, Kristián Máthis, Akiko Yamamoto, Hyun-Kyung Kim, Heeman Choe. Acoustic emission analysis of the compressive deformation of iron foams and their biocompatibility study. Materials Science and Engineering: C. 97 (2019) 367-376 10.1016/j.msec.2018.12.035
  8. 宮崎敏樹, 大矢根綾子, 井村浩一, 菊池正紀, 生体関連セラミックスの新潮流 / Current Topics in Ceramics in Medicine, Biology and Biomimetics, セラミックス, 54(6), 417-421 (2019)
  9. 菊池正紀, バイオセラミックスの標準化 / Standardization of Bioceramics, セラミックス, 54(6), 413-416 (2019)
  10. 菊池正紀(日本鉱物科学会・宝石学会編), 1.鉱物[応用編:材料]医療用材料, 鉱物・宝石の科学事典, (株)朝倉書店, 東京, 390-391, 2019
  11. 菊池正紀、末次寧, 第ⅰ編 セラミックス 第2章 骨結合性・伝導性向上を目指したセラミックス材料の開発, 無機/有機材料の表面処理・改質による生体適合性付与, シーエムシー出版, 東京, 11-17, 2019
  12. 山本 玲子. 第6章 マグネシウム合金の生体内分解特性と高分子被覆による制御. 株式会社シーエムシー出版, 2019

2018

  1. Taira Sato, Yuki Shirosaki, Masaki Nagaya, Yoshinori Asano, Kazuaki Nakano, Hiroshi Nagashima, Mamoru Aizawa, Masanori Kikuchi, Preparation of Anti-Decay Self-Setting Pastes of Hydroxyapatite/Collagen Utilizing (3-Glycidoxypropyl)trimethoxysilane, Journal of Asian Ceramic Societies, 6(4), 322-331, DOI:10.1080/21870764.2018.1517712 (2018)
  2. Kouichi Yasuda, Toshiyuki Kawano, Masanori Kikuchi, Mamoru Aizawa, Kanji Tsuru, Sadami Tsutsumi, Validity Check of Easy-To-Use Torsion Test Method for Bioceramics, Journal of Asian Ceramic Societies, 6(1), 43-53, DOI:10.1080/21870764.2018.1439613 (2018)
  3. Takeshi Makihara, Masataka Sakane, Hiroshi Noguchi, Toshinori Tsukanishi, Yasushi Suetsugu, Masashi Yamazaki. Formation of osteon-like structures in unidirectional porous hydroxyapatite substitute. Journal of Biomedical Materials Research Part B: Applied Biomaterials. 106 [7] (2018) 2665-2672 10.1002/jbm.b.34083
  4. M. Bobby Kannan, R. Walter, A. Yamamoto, H. Khakbaz, C. Blawert. Electrochemical surface engineering of magnesium metal by plasma electrolytic oxidation and calcium phosphate deposition: biocompatibility and in vitro degradation studies. RSC Advances. 8 [51] (2018) 29189-29200 10.1039/c8ra05278f
  5. Bartłomiej Wysocki, Joanna Idaszek, Joanna Zdunek, Krzysztof Rożniatowski, Marcin Pisarek, Akiko Yamamoto, Wojciech Święszkowski. The Influence of Selective Laser Melting (SLM) Process Parameters on In-Vitro Cell Response. International Journal of Molecular Sciences. 19 [6] (2018) 1619 10.3390/ijms19061619
  6. Akimitsu Sato, Yoshinaka Shimizu, Yoshimichi Imai, Toshiji Mukai, Akiko Yamamoto, Chieko Miura, Kenji Muraki, Yuya Sano, Naoko Ikeo, Masahiro Tachi. Initial organ distribution and biological safety of Mg2+ released from a Mg alloy implant. Biomedical Materials. 13 [3] (2018) 035006 10.1088/1748-605x/aaa9d5
  7. 菊池正紀, 応用編第1章第2節 界面相互作用を利用したアパタイト/コラーゲン骨類似ナノ複合体材料の合成と応用, 粉体の表面処理/複合化技術集大成–基礎から応用まで–, (株)テクノシステム, 東京, 403-408, 2018

2017

  1. Takeshi Ogasawara, Masayoshi Uezono, Kazuo Takakuda, Masanori Kikuchi, Shoichi Suzuki, and Keiji Moriyama, , SHApe Optimization of Bone-Bonding Subperiosteal Devices with Finite Element Analysis, Biomed Research International, 2017, Article ID 3609062, 7 pages, DOI:doi:10.1155/2017/3609062 (2017) (2017)
  2. Naga Vijaya Lakshmi Manchinasetty, Sho Oshima and Masanori Kikuchi, Preparation of Flexible Bone Tissue Scaffold Utilizing Sea Urchin Test and Collagen, Journal of Materials Science: Materials in Medicine, 28, Article ID 184, DOI:10.1007/s10856-017-5993-5 (2017)
  3. Naga Vijaya Lakshmi MANCHINASETTY, Taira SATO, Mamoru AIZAWA, Sridharan MADANAGURUSAMY and Masanori KIKUCHI, Influences of Combined Supplementation of Calcium Citrate and Calcium Carbonate on Injectable and Anti-Washout Hydroxyapatite/Collagen Bone Paste Utilizing Sodium Alginate, Journal of The Ceramic Society of Japan, 125(7), 579-583, DOI:10.2109/jcersj2.17016 (2017)
  4. Taira Sato, Masanori Kikuchi, Mamoru Aizawa, Preparation of Hydroxyapatite/Collagen Injectable Bone Paste with an Anti-Washout Property Utilizing Sodium Alginate. Part 1: Influences of Excess Supplementation of Calcium Compounds, Journal of Materials Science: Materials in Medicine, 28(3), 491-497, DOI:10.1007/s10856-017-5853-3 (2017)
  5. 山本 玲子. 生体適合性から見たインプラント材料の変遷と展望. まてりあ. 56 [3] (2017) 225-228 10.2320/materia.56.225
  6. M. Bobby Kannan, Hadis Khakbaz, A. Yamamoto. Understanding the influence of HEPES buffer concentration on the biodegradation of pure magnesium: An electrochemical study. Materials Chemistry and Physics. 197 (2017) 47-56 10.1016/j.matchemphys.2017.05.024
  7. Agnieszka Witecka, Akiko Yamamoto, Wojciech Święszkowski. Influence of SaOS-2 cells on corrosion behavior of cast Mg-2.0Zn0.98Mn magnesium alloy. Colloids and Surfaces B: Biointerfaces. 150 (2017) 288-296 10.1016/j.colsurfb.2016.10.041
  8. 菊池正紀(インタビュー), ホンモノそっくりに働く骨の材料, Someone(サムワン) , 41, (2017)
  9. 菊池正紀, 骨代謝に完全に取り込まれる柔らかい骨補填材, セラミックス, 52(6), 401-404 (2017)
  10. 菊池正紀, 柔らかいセラミックス特集号表紙, セラミックス, 52(6), pages (2017)

2016

  1. Akari Takeuchi, Tomohito Tsuge, Masanori Kikuchi, Preparation of Porous β-Tricalcium Phosphate Using Starfish-Derived Calcium Carbonate as a Precursor, Ceramics International, 42(14), 15376–15382, DOI:10.1016/j.ceramint.2016.06.183 (2016)
  2. Yuka Takemura, Masanori Kikuchi, Masamoto Tafu, Takeshi Toshima, Tetsuji Chohji, Reactivity Improvement of Dicalcium Phosphate Dihydrate with Fluoride for Its Removal from Waste and Drinking Water, Universal Journal of Materials Science, 4(3), 60-64 (2016)
  3. Agnieszka Witecka, Aleksandra Bogucka, Akiko Yamamoto, Kristián Máthis, Tomáš Krajňák, Jakub Jaroszewicz, Wojciech Święszkowski. In vitro degradation of ZM21 magnesium alloy in simulated body fluids. Materials Science and Engineering: C. 65 (2016) 59-69 10.1016/j.msec.2016.04.019
  4. Agnieszka Witecka, Akiko Yamamoto, Joanna Idaszek, Adrian Chlanda, Wojciech Święszkowski. Influence of biodegradable polymer coatings on corrosion, cytocompatibility and cell functionality of Mg-2.0Zn-0.98Mn magnesium alloy. Colloids and Surfaces B: Biointerfaces. 144 (2016) 284-292 10.1016/j.colsurfb.2016.04.021
  5. Chieko Miura, Yoshinaka Shimizu, Yoshimichi Imai, Toshiji Mukai, Akiko Yamamoto, Yuya Sano, Naoko Ikeo, Shuji Isozaki, Toru Takahashi, Miho Oikawa, Hiroyuki Kumamoto, Masahiro Tachi. In vivocorrosion behaviour of magnesium alloy in association with surrounding tissue response in rats. Biomedical Materials. 11 [2] (2016) 025001 10.1088/1748-6041/11/2/025001
  6. Masahiro Yamada, Eiji Kato, Akiko Yamamoto, Kaoru Sakurai. A titanium surface with nano-ordered spikes and pores enhances human dermal fibroblastic extracellular matrix production and integration of collagen fibers. Biomedical Materials. 11 [1] (2016) 015010 10.1088/1748-6041/11/1/015010
  7. M. Bobby Kannan, R. Walter, A. Yamamoto. Biocompatibility and in Vitro Degradation Behavior of Magnesium–Calcium Alloy Coated with Calcium Phosphate Using an Unconventional Electrolyte. ACS Biomaterials Science & Engineering. 2 [1] (2016) 56-64 10.1021/acsbiomaterials.5b00343

2015

  1. ITO A., SOGO Y., YAMAZAKI A., AIZAWA M., OSAKA A., HAYAKAWA S., KIKUCHI M., YAMASHITA K., TANAKA Y., TADOKORO M., SENA L.A., BUCHANAN F., OHGUSHI H., BOHNER Marc., Interlaboratory Studies on In Vitro Test Methods for Estimating In Vivo Resorption of Calcium Phosphate Ceramics, Acta Biomaterialia, 25, 347-355, DOI:10.1016/j.actbio.2015.07.040 (2015)
  2. Takeshi Makihara, Masataka Sakane, Hiroshi Noguchi, Toshinori Tsukanishi, Yasushi Suetsugu, Masashi Yamazaki. Formation of osteon-like structures in unidirectional porous hydroxyapatite substitute. Journal of Biomedical Materials Research Part B: Applied Biomaterials. 106 [7] (2018) 2665-2672 10.1002/jbm.b.34083
  3. Jie Fu, Akiko Yamamoto, Hee Young Kim, Hideki Hosoda, Shuichi Miyazaki. Novel Ti-base superelastic alloys with large recovery strain and excellent biocompatibility. Acta Biomaterialia. 17 (2015) 56-67 10.1016/j.actbio.2015.02.001
  4. M. Bobby Kannan, A. Yamamoto, Hadis Khakbaz. Influence of living cells (L929) on the biodegradation of magnesium–calcium alloy. Colloids and Surfaces B: Biointerfaces. 126 (2015) 603-606 10.1016/j.colsurfb.2015.01.015
  5. 廣瀬志弘, 菊池正紀, 堤定美, 政府戦略分野に係わる再生医療用途機器の国際標準化活動の現状と展望, バイオマテリアル-生体材料- , 33(1), 64-72 (2015)

2014

  1. Yasushi Suetsugu. Synthesis of lead vanadate iodoapatite utilizing dry mechanochemical process. Journal of Nuclear Materials. 454 [1-3] (2014) 223-229 10.1016/j.jnucmat.2014.07.073
  2. Shinya Yamada, Akiko Yamamoto, Toshihiro Kasuga. Poly(l-lactic acid)/vaterite composite coatings on metallic magnesium. Journal of Materials Science: Materials in Medicine. 25 [12] (2014) 2639-2647 10.1007/s10856-014-5302-5
  3. Dayangku Noorfazidah Awang Shri, Koichi Tsuchiya, Akiko Yamamoto. Cytocompatibility evaluation and surface characterization of TiNi deformed by high-pressure torsion. Materials Science and Engineering: C. 43 (2014) 411-417 10.1016/j.msec.2014.07.014
  4. Dayangku Noorfazidah Awang Shri, Koichi Tsuchiya, Akiko Yamamoto. Effect of high-pressure torsion deformation on surface properties and biocompatibility of Ti-50.9 mol. %Ni alloys. Biointerphases. 9 [2] (2014) 029007 10.1116/1.4867402
  5. Myounggeun Choi, Eunji Hong, Jungwon So, Seokbeom Song, Byoung-Suck Kim, Akiko Yamamoto, Yong-Suk Kim, Jinhan Cho, Heeman Choe. Tribological properties of biocompatible Ti–10W and Ti–7.5TiC–7.5W. Journal of the Mechanical Behavior of Biomedical Materials. 30 (2014) 214-222 10.1016/j.jmbbm.2013.11.014
  6. Dayangku Noorfazidah Awang Shri, Koichi Tsuchiya, Akiko Yamamoto. Surface characterization of TiNi deformed by high-pressure torsion. Applied Surface Science. 289 (2014) 338-344 10.1016/j.apsusc.2013.10.161
  7. 菊池正紀(監修:文部科学省 科学研究費新学術領域「生物規範工学」、高分子学会 バイオミメティクス研究会、エアロアクアバイオメカニズム学会), 骨のナノ構造と組成を模倣した人工骨材料の作製 -細胞に材料を骨と錯覚させる, 生体模倣技術と新材料・新製品開発への応用, (株)技術情報協会, 東京, 359-364, 2014
  8. 菊池正紀, 無機と有機の界面相互作用を利用した生体用有機無機複合材料技術, 生体適合性制御と要求特性掌握から実践する高分子バイオマテリアルの設計・開発戦略~モノマー(いち)からデザインするバイオインターフェースと上市までの道筋~, サイエンス&テクノロジー(株), 東京, 157-165, 2014

2013

  1. Masanori Kikuchi, Hydroxyapatite/Collagen Bone-Like Nanocomposite, Biological & Pharmaceutical Bulletin, 36(11), 1666-1669 (2013)
  2. 菊池正紀, バイオセラミックス分野における標準化の取り組み ~ISO提案を中心に, セラミックス, 48(10), 824-828 (2013)
  3. 菊池正紀, 上園将慶, 高久田和夫, 鈴木聖一, 森山啓司, 水酸アパタイト/コラーゲン骨類似ナノ複合体の現状, Fine Ceramics Report, 31(4) , 140~144 (2013)
  4. Bodhak S, Kikuchi M, Sogo Y, Tsurushima H, Ito A, Oyane A, Calcium Phosphate Coating on a Bioresorbable Hydroxyapatite/Collagen Nanocomposite for Surface Functionalization, Chemistry Letter, 42[9], 1029-1031, DOI:10.1246/cl.130327 (2013)
  5. Sato T, Akinori K, SHIROSAKI Y, Hayakawa S, Aizawa M, Osaka A, Kikuchi M., Preparation of Injectable Hydroxyapatite/Collagen Paste Using Sodium Alginate and Influence of Additives, Journal of Ceramic Society of Japan, 121 [9], 775-781 (2013)
  6. Shinya Yamada, Hirotaka Maeda, Akiko Obata, Ulrich Lohbauer, Akiko Yamamoto, Toshihiro Kasuga. Cytocompatibility of Siloxane-Containing Vaterite/Poly(l-lactic acid) Composite Coatings on Metallic Magnesium. Materials. 6 [12] (2013) 5857-5869 10.3390/ma6125857
  7. Komei Kato, Akiko Yamamoto, Shojiro Ochiai, Masahiro Wada, Yuzo Daigo, Koichi Kita, Kenichi Omori. Cytocompatibility and mechanical properties of novel porous 316L stainless steel. Materials Science and Engineering: C. 33 [5] (2013) 2736-2743 10.1016/j.msec.2013.02.038
  8. K. Kato, S. Ochiai, A. Yamamoto, Y. Daigo, K. Honma, S. Matano, K. Omori. Novel multilayer Ti foam with cortical bone strength and cytocompatibility. Acta Biomaterialia. 9 [3] (2013) 5802-5809 10.1016/j.actbio.2012.11.018
  9. 菊池正紀, 独立行政法人物質・材料研究機構(NIMS)における人工骨の研究開発, Journal of Bio-Integration, 3 (1), 17-24 (2013)
  10. Masayoshi Uezono, Kazuo Takakuda, Masanori Kikuchi, Shoichi Suzuki, Keiji Moriyama, Hydroxyapatite/Collagen Nanocomposite-Coated Titanium Rod for Achieving Rapid Osseointegration onto Bone Surface, Journal of Biomedical Materials Research B: Applied Biomaterials, 101B (6), 1031-1038, DOI:10.1002/jbm.b.32913 (2013)
  11. 森山啓司, 上園将慶, 鈴木聖一, 高久田和夫, 菊池正紀, 矯正歯科用骨膜下デバイスの開発と治療への応用, アンチ・エイジングシリーズ3 骨研究最前線 ~代謝・疾病のメカニズムから再生医療・創薬・リハビリ機器・機能性食品開発まで~, (株)エヌ・ティー・エス, 東京, 145~155, 2013
  12. 菊池正紀, 多孔質ハイドロキシアパタイト/コラーゲン複合体, 体内埋め込み医療材料の開発とその理想的な性能・デザインの要件, (株)技術情報協会, 東京, 376-378, 2013
  13. 山本 玲子. 生体吸収性マグネシウム合金を活用した研究開発テーマの発掘. 技術シーズを活用した研究開発テーマの発掘. , 2013, 734-740.

2012

  1. 菊池正紀, バイオセラミックスの標準化への取り組み, Journal of The Society of Inorganic Materials, Japan, 19, 473-479 (2012)
  2. Kang, B.-J., Ryu, H.-H., Park, S.S., Koyama, Y., Kikuchi, M., Woo, H.-M., Kim, W.H., Kweon, O.-K., Comparing the Osteogenic Potential of Canine Mesenchymal Stem Cells Derived from Adipose Tissues, Bone Marrow, Umbilical Cord Blood, and Wharton's Jelly for Treating Bone Defects, Journal of Veterinary Science , 13(3), 299-310, DOI:10.4142/jvs.2012.13.3.299 (2012)
  3. Agnieszka Witecka, Akiko Yamamoto, Henryk Dybiec, Wojciech Swieszkowski. Surface characterization and cytocompatibility evaluation of silanized magnesium alloy AZ91 for biomedical applications. Science and Technology of Advanced Materials. 13 [6] (2012) 064214 10.1088/1468-6996/13/6/064214
  4. Liping Xu, Akiko Yamamoto. In vitro degradation of biodegradable polymer-coated magnesium under cell culture condition. Applied Surface Science. 258 [17] (2012) 6353-6358 10.1016/j.apsusc.2012.03.036
  5. Liping Xu, Akiko Yamamoto. Characteristics and cytocompatibility of biodegradable polymer film on magnesium by spin coating. Colloids and Surfaces B: Biointerfaces. 93 (2012) 67-74 10.1016/j.colsurfb.2011.12.009
  6. Komei Kato, Akiko Yamamoto, Shojiro Ochiai, Yuzo Daigo, Takeshi Isobe, Suguru Matano, Kenichi Omori. Cell Proliferation, Corrosion Resistance and Mechanical Properties of Novel Titanium Foam with Sheet Shape. MATERIALS TRANSACTIONS. 53 [4] (2012) 724-732 10.2320/matertrans.m2011325
  7. 山本 玲子. マグネシウム材の医療機器への適用. アルトピア. (2012) 17-22
  8. 菊池正紀, 骨ナノ構造の再現―水酸アパタイトとコラーゲンの自己組織化―, 先端バイオマテリアルハンドブック, (株)エヌ・ティー・エス, 東京, 273-276, 2012

2011

  1. 小川哲朗, 相澤守, 菊池正紀, 宮路史明, 生体関連材料分野の発展, セラミックス, 46(12), 1054-1060 (2011)
  2. 菊池正紀, 骨に接合し骨を伝導する日本発の生体材料, 東京医科歯科大学広報誌「bloom! 医科歯科」特集号 東京医科歯科大学生体材料工学研究所60年史, , 22-22 (2011)
  3. 菊池正紀, 複合体人工骨材料, 人工臓器, 40(1), 81-83 (2011)
  4. M. Kikuchi, Effect of Test Circumstances on Compressive Strength of Porous Calcium Phosphate Ceramics for Establishment of Standard Measurement Condition, Bioceramics Development and Applications (journal of International Society for Ceramics in Medicine), 1, pages, DOI:doi:10.4303/bda/D101201 (2011)
  5. Stefan Sandukas, Akiko Yamamoto, Afsaneh Rabiei. Osteoblast adhesion to functionally graded hydroxyapatite coatings doped with silver. Journal of Biomedical Materials Research Part A. 97A [4] (2011) 490-497 10.1002/jbm.a.33081
  6. 山本 玲子. 生体内分解材料としてのマグネシウム合金の医療応用. 表面技術. 62 [4] (2011) 204-210
  7. Agata Roguska, Sachiko Hiromoto, Akiko Yamamoto, Michał Jerzy Woźniak, Marcin Pisarek, Małgorzata Lewandowska. Collagen immobilization on 316L stainless steel surface with cathodic deposition of calcium phosphate. Applied Surface Science. 257 [11] (2011) 5037-5045 10.1016/j.apsusc.2011.01.018
  8. Caterina Minelli, Akiko Yamamoto, Mi-Jeong Kim. Optically Patternable Polymer Films as Model Interfaces to Study Cellular Behaviour on Topographically Structured Materials. Journal of Biomaterials Science, Polymer Edition. 22 [4-6] (2011) 577-588 10.1163/092050610x488223
  9. 菊池正紀(監修:下村政嗣、田中順三), 第一編第一章 自己組織化した人工骨, ソフトナノテクノロジー −バイオマテリアル革命−(普及版), シーエムシー出版, 東京, 5-14, 2011
  10. 田中順三、菊池正紀(監修:下村政嗣、田中順三), 総論 −細胞分化に影響を与えるナノ構造−, ソフトナノテクノロジー −バイオマテリアル革命−(普及版), シーエムシー出版, 東京, 1-4, 2011
  11. Masanori Kikuchi, Yoshihisa Koyama, Kazuya Edamura, Atsushi Irie, Shinichi Sotome, Soichiro Itoh, Kazuo Takakuda, Kenichi Shinomiya and Shigeo Tanaka (Boreddy Reddy Ed), Synthesis of Hydroxyapatite/Collagen Bone-Like Nanocomposite and Its Biological Reactions, Advances in Nanocomposites - Synthesis, Characterization and Industrial Applications, Intechopen ltd., London, UK, 181-194, 2011
  12. 山本 玲子. 脱有害物質材料. 環境・エネルギー材料ハンドブック. , 2011, 527-538.

2010

  1. BYEON Ye-Eun, RYU Hak-Hyun, KOYAMA Yoshihisa, KIKUCHI Masanori, KIM Wan Hee, KANG Kyung-Sun, KWEON Oh-Kyeong, Particline Effect of Canine Allogenic Umbilical Cord Blood-Derived Mesenchymal Stromal Cells Mixed with Beta Tricalcium Phosphate on Bone Regeneration in Ectopic Implantations, Cytotherapy, 12, 626-636 (2010)
  2. Hidetsugu Maehara, Shinichi Sotome, Toshitaka Yoshii, Ichiro Torigoe, Yuichi Kawasaki, Yumi Sugata, Masato Yuasa, Masahiro Hirano, Naomi Mochizuki, Masanori Kikuchi, Kenichi Shinomiya and Atsushi Okawa, Repair of Large Osteochondral Defects in Rabbits Using Porous Hydroxyapatite/Collagen (HAp/Col) and Fibroblast Growth Factor-2 (FGF-2), Journal of Orthopaedic Research, 28 (5), 677-686, DOI:10.1002/jor.21032 (2010)
  3. Yujiro Watanabe, Yosinori Miwa, Toshiyuki Ikoma, YAMADA, Hirohisa, SUETSUGU, Yasushi, Junzo Tanaka, Yusuke Moriyoshi, Yu Komatsu . Long-term immobilization of strontium ions using zeolite A/calcium phosphate nanocomposites. JOURNAL OF THE CERAMIC SOCIETY OF JAPAN. 118 [11] (2010) 1044-1049
  4. Toru Tonegawa, Toshiyuki Ikoma, Yasushi Suetsugu, Naoki Igawa, Yoshitaka Matsushita, Tomohiko Yoshioka, Nobutaka Hanagata, Junzo Tanaka. Thermal expansion of type A carbonate apatite. Materials Science and Engineering: B. 173 [1-3] (2010) 171-175 10.1016/j.mseb.2010.02.008
  5. M. Yamada, T. Miyauchi, A. Yamamoto, F. Iwasa, M. Takeuchi, M. Anpo, K. Sakurai, K. Baba, T. Ogawa. Enhancement of adhesion strength and cellular stiffness of osteoblasts on mirror-polished titanium surface by UV-photofunctionalization. Acta Biomaterialia. 6 [12] (2010) 4578-4588 10.1016/j.actbio.2010.07.010
  6. M. Tomozawa, H.Y. Kim, A. Yamamoto, S. Hiromoto, S. Miyazaki. Effect of heat treatment temperature on the microstructure and actuation behavior of a Ti–Ni–Cu thin film microactuator. Acta Materialia. 58 [18] (2010) 6064-6071 10.1016/j.actamat.2010.07.024
  7. Sachiko Hiromoto, Akiko Yamamoto. Control of degradation rate of bioabsorbable magnesium by anodization and steam treatment. Materials Science and Engineering: C. 30 [8] (2010) 1085-1093 10.1016/j.msec.2010.06.001
  8. Tomohiko Miyauchi, Masahiro Yamada, Akiko Yamamoto, Fuminori Iwasa, Tetsuo Suzawa, Ryutaro Kamijo, Kazuyoshi Baba, Takahiro Ogawa. The enhanced characteristics of osteoblast adhesion to photofunctionalized nanoscale TiO2 layers on biomaterials surfaces. Biomaterials. 31 [14] (2010) 3827-3839 10.1016/j.biomaterials.2010.01.133
  9. Norio Hori, Fuminori Iwasa, Takeshi Ueno, Kazuo Takeuchi, Naoki Tsukimura, Masahiro Yamada, Masami Hattori, Akiko Yamamoto, Takahiro Ogawa. Selective cell affinity of biomimetic micro-nano-hybrid structured TiO2 overcomes the biological dilemma of osteoblasts. Dental Materials. 26 [4] (2010) 275-287 10.1016/j.dental.2009.11.077
  10. 菊池正紀, 末次寧, 骨の再生に用いられる材料の開発 -NIMS生体材料センター無機生体材料グループ-, Web Journal, 16(109), 25-28 (2010)
  11. Teruaki Yoshida, Masanori Kikuchi, Yoshihisa Koyama and Kazuo Takakuda, Osteogenic Activity of MG63 Cells on Bone-Like Hydroxyapatite/Collagen Nanocomposite Sponges, Journal of Materials Science: Materials in Medicine, 21 (4), 1263–1272, DOI:10.1007/s10856-009-3938-3 (2010)
  12. Miyahara, Y, Kobayashi, H, Chen, GP, Kikuchi, M, Focus on Nanobiomaterials and Technologies for Breakthrough in Future Medicine, Science and Technology of Advanced Materials, 11,(2010)
  13. 山本 玲子. 金属材料の毒性と安全性・細胞による毒性評価法. 医療用金属材料概論. , 2010, 223-238.

2009

  1. Byeon Ye-Eun, Ryu Hak-Hyun, Park Sung Su, KOYAMA Yoshihisa, KIKUCHI Masanori, Seo Min-Soo, Kim Wan Hee, Kang Kyung-Sun, Kweon Oh-Kyeong, ComparISOn of Canine Allogenic Umbilical Cord Blood Derived Mesenchymal Stem Cells and Their Lysates Mixed with Beta-Tricalcium Phosphate in Orthotopic Implantation, Tissue Engineering and Regenerative Medicine, 6 [4-11], 833-839 (2009)
  2. Yasushi Suetsugu, Dominic Walsh, Junzo Tanaka, Stephen Mann. Hydroxyapatite pattern formation in PVA gels. Journal of Materials Science. 44 [21] (2009) 5806-5814 10.1007/s10853-009-3815-y
  3. Yujiro Watanabe, Toshiyuki Ikoma, Hirohisa Yamada, Yasushi Suetsugu, Yu Komatsu, Geoffrey W. Stevens, Yusuke Moriyoshi, Junzo Tanaka. Novel Long-Term Immobilization Method for Radioactive Iodine-129 Using a Zeolite/Apatite Composite Sintered Body. ACS Applied Materials & Interfaces. 1 [7] (2009) 1579-1584 10.1021/am900251m
  4. Sachiko Hiromoto, Akiko Yamamoto. High corrosion resistance of magnesium coated with hydroxyapatite directly synthesized in an aqueous solution. Electrochimica Acta. 54 [27] (2009) 7085-7093 10.1016/j.electacta.2009.07.033
  5. Akiko Yamamoto, Sachiko Hiromoto. Effect of inorganic salts, amino acids and proteins on the degradation of pure magnesium in vitro. Materials Science and Engineering: C. 29 [5] (2009) 1559-1568 10.1016/j.msec.2008.12.015
  6. 菊池正紀, 骨のナノ構造を模倣したバイオセラミックス / Bioceramics-Based Materials Mimicking Bone Nanostructure, バイオマテリアル -生体材料- , 27(2), 103-109 (2009)

2008

  1. Byung-Jun Jang, Ye-Eun Byeon, Ji-Hey LIm, Hak-Hyun Ryu, Wan Hee Kim, Yoshihisa Koyama, Masanori Kikuchi, Kyung-Sun Kang, Oh-Kyeong Kweon, Implantation of Canine Umbilical Cord Blood-Derived Mesenchymal Stem Cells Mixed with Beta-Tricalcium Phosphate Enhances Osteogenesis in Bone Defect Model Dog, Journal of Veterinary Science, 9(4), 387-393 (2008)
  2. 菊池正紀, 相澤守, 生体関連セラミックスの研究動向と将来展望 / the State of Art of Research and Development in Bioceramics, セラミックス, 43(11), 978-982 (2008)
  3. Tsuchiya, A., Sotome, S., Asou, Y., Kikuchi, M., Koyama, Y., Ogawa, T., Tanaka, J., Shinomiya, K. , Effects of Pore Size and Implant Volume of Porous Hydroxyapatite/Collagen (HAp/Col) on Bone Formation in a Rabbit Bone Defect Model, Journal of Medical and Dental Sciences , 55(1), 91-99 (2008)
  4. Masanori Kikuchi, Material Design of Ceramic/Polymer Composites for Regenerative Medicine, Surface Design and Modification of Biomaterials for Clinical Application, Transworld Research Network, Kelala, India, 189-203, 2008
  5. KIKUCHI Masanori, SUETSUGU Yasushi, KOYAMA Yoshihisa, SOTOME Shinichi, ITOH Soichiro, TAKAKUDA Kazuo, SHINOMIYA Kenichi, EDAMURA Kazuya, NAGAOKA Katsuyoshi, TANAKA Shigeo, Bone Regeneration Materials Based on Calcium Phosphate Ceramic, Biomaterials in Asia, World Scientific Publishing Co Pte Ltd, Singapore,, 327-342, 2008
  6. Sachiko Hiromoto, Joerg Ziegler, Akiko Yamamoto. Morphological Change of Fibroblast Cells on Titanium and Platinum Cultured at Anodic and Cathodic Potentials. Zairyo-to-Kankyo. 57 [9] (2008) 400-408 10.3323/jcorr.57.400 Open Access
  7. Sachiko Hiromoto, Akiko Yamamoto, Norio Maruyama, Hidetoshi Somekawa, Toshiji Mukai. Influence of pH and flow on the polarisation behavior of pure magnesium in borate buffer solutions. Corrosion Science. 50 [12] (2008) 3561-3568 10.1016/j.corsci.2008.09.026
  8. 山本 玲子. マグネシウム合金の医療応用. 軽金属. 58 [11] (2008) 570-576
  9. Sachiko Hiromoto, Tamao Shishido, Akiko Yamamoto, Norio Maruyama, Hidetoshi Somekawa, Toshiji Mukai. Precipitation control of calcium phosphate on pure magnesium by anodization. Corrosion Science. 50 [10] (2008) 2906-2913 10.1016/j.corsci.2008.08.013
  10. Sachiko Hiromoto, Joerg Ziegler, Akiko Yamamoto, ZIEGLER, Joerg, HIROMOTO, Sachiko, YAMAMOTO, Akiko. Mosphological Change of Fibroblast Cells on Titanium and Platinum Cultured at Anodic and Cathodic Potentials. CORROSION ENGINEERING. 57 [9] (2008) 521-535
  11. Sachiko Hiromoto, Akiko Yamamoto, Norio Maruyama, Hidetoshi Somekawa, Toshiji Mukai. Polarization Behavior of Pure Magnesium under a Controlled Flow in a NaCl Solution. MATERIALS TRANSACTIONS. 49 [6] (2008) 1456-1461 10.2320/matertrans.mra2008011
  12. Hidetoshi Somekawa, Norio Maruyama, Sachiko Hiromoto, Akiko Yamamoto, Toshiji Mukai. Fatigue behaviors and microstructures in an extruded Mg-Al-Zn alloy. MATERIALS TRANSACTIONS. 49 [3] (2008) 681-684 10.2320/matertrans.mrp2007292
  13. C. Minelli, A. Kikuta, A. Yamamoto. A Micro-fluidic System for the Evaluation of Blood Compatibility of Polymers. The Open Biotechnology Journal. 2 [1] (2008) 43-50 10.2174/1874070700802010043
  14. Caterina, MINELLI, KIKUTA, Akemi, TSUD, Nataliya, Michael D Ball, YAMAMOTO, Akiko. A micro-fluidic study of whole blood behaviour on PMMA topographical nanostructures. JOURNAl OF NANOBIOTECHNOLOGY. Web (2008) 9999
  15. Jin Kawakita, Norio Maruyama, Seiji Kuroda, Sachiko Hiromoto, Akiko Yamamoto. Fabrication and mechanical properties of composite structure by Warm Spraying of Zr-base metallic glass. MATERIALS TRANSACTIONS. 49 [2] (2008) 317-323 10.2320/matertrans.t-mra2007882
  16. 菊池正紀(田中順三、角田方衛、立石哲也編), 第6章 再生医療の足場材料とナノテクノロジー, バイオマテリアル 材料と生体の相互作用 (materials Series), 内田老鶴圃, 199-234, 2008

2007

  1. Takakuda K, Koyama Y, Matsumoto HN, Shirahama N, Akita K, Shoji D, Ogawa T , Kikuchi M, Tanaka J, Material Design of Bioabsorbable Inorganic/Organic Composites for Bone Regeneration, Journal of Nanoscience and Nanotechnology, 7(3), 738-741 (2007)
  2. Koyama Y, Kikuchi M, Edamura K, Nagaoka K, Tanaka S , Tanaka J, Takakuda K, Reconstruction of Bone Fenestration on Mandibular by the Guided Bone Regeneration Methods with Beta-TCP/PLGC Membranes, Journal of Nanoscience and Nanotechnology, 7(3), 859-861 (2007)
  3. Junko Okuda-Shimazaki, Akiko Yamamoto, Daisuke Kuroda, Takao Hanawa, Akiyoshi Taniguchi. The Effect of Metal Materials on Heat Shock Protein 70B’ Gene Expression. The Open Biotechnology Journal. 1 [1] (2007) 14-17 10.2174/1874070700701010014 Open Access
  4. Kimi Kurotobi, Akiko Yamamoto, Akemi Kikuta, Takao Hanawa. Short term evaluation of material blood compatibility using a microchannel array. Journal of Materials Science: Materials in Medicine. 18 [6] (2007) 1175-1184 10.1007/s10856-007-0120-7
  5. Akiko Yamamoto, Yuko Kohyama, Hideki Hosoda, Shuichi Miyazaki, Takao Hanawa. Cytocompatibility Evaluation of Ti-Ni and Ti-Mo-Al System Shape Memory Alloys. MATERIALS TRANSACTIONS. 48 [3] (2007) 361-366 10.2320/matertrans.48.361
  6. 菊池正紀, 有機/無機複合材料を使った骨再生の最新技術, 工業材料, 55(3), 46-50 (2007)
  7. 菊池正紀, 田中順三(筏義人編), コンポジット材料, 再生医療工学の技術 Technology of Regenerative Medicine, シーエムシー出版, 東京, 25-29, 2007
  8. 田中順三、菊池正紀(立石哲也・田中順三・角田方衛編著), 第二章 有機/無機界面とバイオミネラリゼーション, 生体医工学の軌跡 −生体材料研究先駆者像−, 米田出版、東京, 29-52, 2007

2006

  1. Masanori Kikuchi, Yasushi Suetsugu, Junzo Tanaka, Research in Biomaterials Center, National Institute for Materials Science, Phosphorus Research Bulletin , 20, 1-10 (2006)
  2. 菊池正紀, アパタイト・コラーゲン複合体, 腎と骨代謝, 19(4), 319-324 (2006)
  3. 菊池正紀, 坂根正孝, ソフトナノテクノロジーによる骨・靱帯再建材料, 材料の科学と工学, 43(4), 14-19 (2006)
  4. 菊池正紀, 田中順三, 次世代人工骨 アパタイト/コラーゲンナノ複合体, ケミカルエンジニヤリング, 51(6), 425-429 (2006)
  5. S. Yunoki, T. Ikoma, A. Monkawa, K. Ohta, M. Kikuchi, S. Sotome, K. Shinomiya and J. Tanaka, Control of Pore Structure and Mechanical Property in Hydroxyapatite/Collagen Composite Using Unidirectional Ice Growth, Materials Letters, 60(8), 999-1002, DOI:10.1016/j.matlet.2005.10.064 (2006)
  6. Taehoon Oh , Mizanur Rahman , Ji-Hey Lim , Mi-Sun Park , Dae-Yong Kim , Jung-hee Yoon , Wan Hee Kim , Masanori Kikuchi , Junzo Tanaka, Yoshihisa Koyama , Oh-Kyeong Kweon, Guided Bone Regeneration with β-Tricalcium Phosphate and Poly L-Lactide-co-Glycolide-co-ε-Caprolactone Membrane in Partial Defects of Canine Humerus, J. Vet. Sci., 7(1), 73-77 (2006)
  7. SUETSUGU, Yasushi, HOTTA, Yuji, IWASASHI, Masashi, SAKANE, Masataka, KIKUCHI, Masanori, IKOMA, Toshiyuki, HIGAKITatsuhiko, OCHIAI, Naoyuki, TANAKA, Junzo. Structural and Tissue Reaction Properties of Novel Hydroxyapatite Ceramics with Unidirectional Pores. KEY ENGINEERING MATERIALS. (2006) 1003-1006
  8. 菊池正紀、田中順三, 第6編第2章3 もっと早く骨を治す, ファイバー スーパーバイオミメティックス〜近未来の新技術創成〜 , (株)エヌ・ティー・エス, 東京, 1093-1097, 2006
  9. 菊池正紀、田中順三(田畑泰彦編), 6.バイオマテリアルとしての複合材料, 再生医療の基礎シリーズ−生医学と工学の接点−5再生医療のためのバイオマテリアル, コロナ社、東京, 90-104, 2006
  10. 末次寧、菊池正紀、田中順三(田畑泰彦・岡野光夫編、日本組織工学会監修), ティッシュエンジニアリングのための無機材料, ティッシュエンジニアリング2006, 日本医学館, 72-76, 2006

2005

  1. 菊池正紀, 早乙女進一, 四宮謙一, 田中順三, ソフトナノテクノロジーによる組織再生材料の開発−骨組織再生スポンジ−, セラミックス, 40(10), 858-861 (2005)
  2. Nishikawa T, Masuno K, Tominaga K, Koyama Y, Yamada T, Takakuda K, Kikuchi M, Tanaka J, Tanaka A., Bone Repair Analysis in a Novel Biodegradable Hydroxyapatite/Collagen Composite Implanted in Bone, Implant Dent., 14(3), 252-260, DOI:10.1097/01.id.0000173628.00705.d0 (2005)
  3. Soichiro Itoh, Masanori Kikuchi, Yosihisa Koyama, Hiroko N. Matsumoto, Kazuo Takakuda, Kenichi Shinomiya, Junzo Tanaka, Development of a Novel Biomaterial, Hydroxyapatite/Collagen (HAp/Col) Composite for Medical Use., Biomed. Mater. Eng, 15(1-2), 29-41 (2005)
  4. SUETSUGU, Yasushi, IKOMA, Toshiyuki, KIKUCHI, Masanori, TANAKA, Junzo. SINGLE CRYSTAL GROWTH AND STRUCTURE ANALYSIS OF AB-TYPE CARBONATE APATITE. KEY ENGINEERING MATERIALS. (2005) 525-528
  5. Norio Maruyama, Hironori Kawasaki, Akiko Yamamoto, Sachiko Hiromoto, Hachiro Imai, Takao Hanawa. Friction-Wear Properties of Nickel-Less Co-Cr-Mo Alloy in a Simulated Body Fluid. MATERIALS TRANSACTIONS. 46 [7] (2005) 1588-1592 10.2320/matertrans.46.1588
  6. Daisuke Kuroda, Hironori Kawasaki, Akiko Yamamoto, Sachiko Hiromoto, Takao Hanawa. Mechanical properties and microstructures of new Ti-Fe-Ta and Ti-Fe-Ta-Zr system alloys. Materials Science and Engineering: C. 25 [3] (2005) 312-320 10.1016/j.msec.2005.04.004
  7. 谷口顕良, 末次寧, 菊池正紀, 田中順三, ナノテクノロジーを活用した人工臓器の創出, バイオマテリアル−生体材料, 23(1), 53-58 (2005)
  8. 田中順三、菊池正紀(監修:下村政嗣、田中順三), 総論 −細胞分化に影響を与えるナノ構造−, ソフトナノテクノロジー −バイオマテリアル革命− soft-Nanotechnology -The Biomaterial Revolution-, シーエムシー出版, 東京, 1-4, 2005
  9. 菊池正紀(監修:下村政嗣、田中順三), 第一編第一章 自己組織化した人工骨, ソフトナノテクノロジー −バイオマテリアル革命− soft-Nanotechnology -The Biomaterial Revolution-, シーエムシー出版, 東京, 5-14, 2005
  10. Masanori Kikuchi (Burtrabd Lee and Sridhar Komarneni Ed), Synthesis of Bone-Like Hydroxyapatite/Collagen Self-Organized Nanocomposites, Chemical Processing of Ceramics Second Edition, CRC Press LLC, Boca Raton, FL, USA, 613-627, 2005
  11. 菊池正紀, 田中順三(監修:国武豊喜), 第10章バイオナノマテリアル 第1節バイオのためのナノマテリアル 2骨類似複合材料, ナノマテリアルハンドブック, (株)エヌ・ティー・エス, 東京, 740-744, 2005

2004

  1. Masanori Kikuchi, Yoshihisa Koyama, Takeki Yamada, Yukari Imamura, Takao Okada, Noriaki Shirahama, Kazumi Akita, Kazuo Takakuda, Junzo Tanaka, Development of Guided Bone Regeneration Membrane Composed of β-Tricalcium Phosphate and Poly (L-Lactide-co-Glycolide-co-ε-Caprolactone) Composites, Biomaterials, 25, 5979-5986, DOI:10.1016/j.biomaterials.2004.02.001 (2004)
  2. 菊池正紀, 田中順三, 骨再生と協調する生体吸収性材料アパタイト/コラーゲン複合体の開発, Web Journal, 9(7), 30-33 (2004)
  3. 小林尚俊, 生駒俊之, 菊池正紀, 田中順三, 骨組織再生とナノテクノロジー, バイオマテリアル−生体材料, 22(6), 415-421 (2004)
  4. Masanori Kikuchi, Toshiyuki Ikoma, Soichiro Itoh, Hiroko N. Matsumoto, Yoshihisa Koyama, Kazuo Takakuda, Kenichi Shinomiya and Junzo Tanaka, Biomimetic Synthesis of Bone-Like Nanocomposites Using the Self-Organization Mechanism of Hydroxyapatite and Collagen, Composites Science and Technology, 64(6), 819-25, DOI:10.1016/j.compscitech.2003.09.002 (2004)
  5. Soichiro Itoh, Masanori Kikuchi, Yosihisa Koyama, Kazuo Takakuda, Kenichi Shinomiya, Junzo Tanaka, Development of a Hydroxyapatite/Collagen (HAp/Col) Nano-Composite as a Medical Device, Cell Transplant., 13(4), 451-61 (2004)
  6. Shinichi Sotome, Toshimasa Uemura, Masanori Kikuchi, Chen Jiani, Soichiro Itoh, Junzo Tanaka, Tetsuya Tateishi, Kenichi Shinomiya, Synthesis and In Vivo Evaluation of a Novel Hydroxyapatite/Collagen-Alginate as Bone Filler and a Drug Delivery Carrier of Bone Morphogenetic Protein, Materials Science & Engineering: C, 24(3), 341-7, DOI:10.1016/j.msec.2003.12.003 (2004)
  7. Yujiro Watanabe, Toshiyuki Ikoma, Akira Monkawa, Yasushi Suetsugu, Hirohisa Yamada, Junzo Tanaka, Yusuke Moriyoshi. Fabrication of Transparent Hydroxyapatite Sintered Body with High Crystal Orientation by Pulse Electric Current Sintering. Journal of the American Ceramic Society. 88 [1] (2004) 243-245 10.1111/j.1551-2916.2004.00041.x
  8. Yujiro Watanabe, Yusuke Moriyoshi, Yasushi Suetsugu, Toshiyuki Ikoma, Takeshi Kasama, Tadashi Hashimoto, Hirohisa Yamada, Junzo Tanaka. Hydrothermal Formation of Hydroxyapatite Layers on the Surface of Type-A Zeolite. Journal of the American Ceramic Society. 87 [7] (2004) 1395-1397 10.1111/j.1151-2916.2004.tb07746.x
  9. Takao Hanawa, Yuko Kohayama, Sachiko Hiromoto, Akiko Yamamoto. Effect of biological factors on the repassivation current of titanium. MATERIALS TRANSACTIONS. 45 [5] (2004) 1635-1639 10.2320/matertrans.45.1635
  10. Akiko Yamamoto, Yuko Kohyama, Daisuke Kuroda, Takao Hanawa. Cytocompatibility evaluation of Ni-free stainless steel manufactured by nitrogen adsorption treatment. Materials Science and Engineering: C. 24 [6-8] (2004) 737-743 10.1016/j.msec.2004.08.017
  11. 山本 玲子. 生体為害性金属元素と材料. まてりあ. 43 [8] (2004) 639-642
  12. YAMAMOTO, Akiko, 本間理恵子, 角田方衛, 塙隆夫, 本間理恵子, 角田方衛, 塙隆夫. Cytotoxicity evaluation of ceramic particles of different sizes and shapes. JOURNAL OF BIOMEDICAL MATERIALS RESEARCH. 68 (2004) 244-256
  13. 小山富久, 菊池正紀, 高久田和夫, 田中順三, 人工材料(無機)〜再生医療の視点から〜, 人工臓器, 33(3), 227-232 (2004)
  14. Masanori Kikuchi, Hiroko N. Matsumoto, Takeki Yamada, Yoshihisa Koyama, Kazuo Takakuda and Junzo Tanaka, Glutaraldehyde Cross-Linked Hydroxyapatite/Collagen Self-Organized Nanocomposites, Biomaterials, 25, 63-69, DOI:10.1016/S0142-9612(03)00472-1 (2004)
  15. 菊池正紀, 田中順三(編集:田畑泰彦), 第2章 材料,技術,方法論の研究開発 1.足場材料と関連技術 4)複合材料, 遺伝子医学mook1 再生医療へのブレイクスルー その革新技術と今後の方向性, (株)メディカル ドゥ、大阪, 151-155, 2004
  16. 菊池正紀(監修:立石哲也・田中順三、編著:立石哲也・田中順三、牛田多加志、菊池正紀、小林尚俊、宮原裕二), 第3章 再生医療のキーテクノロジー 技術編9 自己組織化, 図解 再生医療工学, (株)工業調査会, 東京, 96-100, 2004
  17. 田口哲志、生駒俊之、松田篤、菊池正紀、小林尚俊、田中順三(監修:立石哲也・田中順三、編著:立石哲也・田中順三、牛田多加志、菊池正紀、小林尚俊、宮原裕二), 再生医療における材料工学の基礎, 図解 再生医療工学, (株)工業調査会, 東京, 23-44, 2004

2003

  1. Yoshihisa KOYAMA, Masanori KIKUCHI, Takeki YAMADA, Tomohiro KANAYA, Hiroko.N MATSUMOTO, Kazuo TAKAKUDA, Hiroo MIYAIRI and Junzo TANAKA, Guided Bone Regeneration with Novel Bioabsorbable Membranes, Jsme International Journal Series-C, 46(4), 1409-1416, DOI:10.1299/jsmec.46.1409 (2003)
  2. 菊池正紀, 田中順三, ナノ構造制御で実用的な人工骨開発, 日経先端技術: ナノが拓く産業フロンティア, 52, 16-19 (2003)
  3. K. Ohta, M. Kikuchi and J. Tanaka, Fabrication of Hydroxyapatite Sintered Bodies with C Axis Orientation, Chem. Lett., 32, 646-647, DOI:10.1246/cl.2003.646 (2003)
  4. Uemura T, Dong J, Wang Y, Kojima H, Saito T, Iejima D, Kikuchi M, Tanaka J, Tateishi T., Transplantation of Cultured Bone Cells Using Combinations of Scaffolds and Culture Techniques., Biomaterials, 24(13), 2277-86, DOI:10.1016/S0142-9612(03)00039-5 (2003)
  5. Pao-Li Wang, Kiyoshi Ohura, Mari Oido-Mori, Yusuke Kowashi, Masanori Kikuchi, Yasushi Suetsugu, Junzo Tanaka, Dna Microarray Analysis of Human Gingival Fibroblasts from Healthy and Inflammatory Gingival Tissues. , Biochem Biophys Res Commun., 305(4), 970-973, DOI:10.1016/S0006-291X(03)00821-0 (2003)
  6. 菊池正紀, 田中順三, 人工材料(無機), 人工臓器, 32(3), 239-242 (2003)
  7. 菊池正紀, 末次寧, 田中順三, 再生医療材料の開発, 筑波石川研究交流会 シーズブック, 16, 31-32 (2003)
  8. 田口哲志, 菊池正紀, 田中順三(監修:田中順三・四宮謙一), 再生医療と材料 -限りなく生体に近い材料を作る-, 再生医療 ティッシュエンジニアリング&生体材料最前線, (株)日刊工業新聞社, 東京, 69-72, 2003
  9. 菊池正紀, 田中順三(監修:田中順三・四宮謙一), セラミックス複合体, 再生医療 ティッシュエンジニアリング&生体材料最前線, (株)日刊工業新聞社、東京, 98-103, 2003

2002

  1. Soichiro Itoh, Masanori Kikuchi, Yosihisa Koyama, Kazuo Takakuda, Kenichi Shinomiya, Junzo Tanaka, Development of an Artificial Vertebral Body Using a Novel Biomaterial, Hydroxyapatite/Collagen Composite, Biomaterials, 23(19), 3919-3926, DOI:10.1016/S0142-9612(02)00126-6 (2002)
  2. Chang MC, Ikoma T, Kikuchi M, Tanaka J, The Cross-Linkage Effect of Hydroxyapatite/Collagen Nanocomposites on a Self-Organization Phenomenon, Journal of Materials Science: Materials in Medicine, 13 (10), 993-997, DOI:10.1023/A:1019825132610 (2002)
  3. K. Ohta, M. Kikuchi, J. Tanaka and H. Eda, Synthesis of C Axes Oriented Hydroxyapatite Aggregate, Chem. Lett., 31, 894-895, DOI:10.1246/cl.2002.894 (2002)
  4. Masanori KIKUCHI, Yoshihisa KOYAMA, Kazuo TAKAKUDA, Hiroo MIYAIRI, Noriaki SHIRAHAMA, and Junzo TANAKA, In Vitro Change in Mechanical Strength of β-Tricalcium Phosphate / Copolymerized Poly-L-Lactide Composites and Their Application for Guided Bone Regeneration, J. Biomed. Mater. Res., 62(2), 265-272, DOI:10.1002/jbm.10248 (2002)
  5. Itoh S, Kikuchi M, Takakuda K, Nagaoka K, Koyama Y, Tanaka J, Shinomiya K., Implantation Study of a Novel Hydroxyapatite/Collagen (HAp/Col) Composite Into Weight-Bearing Sites of Dogs., J Biomed Mater Res, 63(5), 507-515, DOI:10.1002/jbm.10305 (2002)
  6. Pao-Li Wang, Mari Oido-Mori, Takeo Fujii, Yusuke Kowashi, Masanori Kikuchi, Yasushi Suetsugu, Junzo Tanaka, Yasutaka Azuma, Mitsuko Shinohara and Kiyoshi Ohura, Effect of Anti-Cd14 Antibody on Experimental Periodontitis Induced by Porphyromonas Gingivalis Lipopolysaccharide, Japanese Journal of Pharmacology, 89(2), 176-183 (2002)
  7. 末次寧, 菊池正紀, 田中順三, 《研究室紹介》物質・材料研究機構 生体材料研究センター 組織再生材料グループ, Phosphorous Letter, 44, 42-43 (2002)
  8. Dong J, Uemura T, Kikuchi M, Tanaka J, Tateishi T., Long-Term Durability of Porous Hydroxyapatite with Low-Pressure System to Support Osteogenesis of Mesenchymal Stem Cells., Biomed Mater Eng., 12(2), 203-209 (2002)
  9. 伊藤聰一郎、菊池正紀、小山富久、高久田和夫、田中順三、四宮謙一, 荷重部位へのハイドロキシアパタイト/コラーゲン(HAp/Col)インプラント移植実験, 整形外科, 53(3), 359-361 (2002)
  10. 小山富久, 松本裕子, 高久田和夫, 宮入裕夫, 菊池正紀, 田中順三, 骨を誘導・再生する有機/無機複合膜材料, 工業材料, 50(2), 42-45 (2002)
  11. 菊池正紀, 田中順三(筏義人編), コンポジット材料, 再生医療工学の最先端 (cutting-Edge Engineerings for Regenerative Medicine), シーエムシー出版, 東京, 25-29, 2002
  12. 菊池正紀, 田中順三(社団法人日本セラミックス協会編), 第11編生体関連セラミックス 3. 生体用セラミックス 3.9複合材料 (3)リン酸カルシウム/コラーゲン複合体, セラミック工学ハンドブック第2版 応用, 技報堂出版(株), 東京, 1530, 2002
  13. 菊池正紀, 田中順三(社団法人日本セラミックス協会編), 第11編生体関連セラミックス 3. 生体用セラミックス 3.9複合材料 (2)リン酸カルシウム/ポリ乳酸系複合体, セラミック工学ハンドブック第2版 応用, 技報堂出版(株), 東京, 1529-1530, 2002
  14. 菊池正紀(谷原正夫編), 自己組織化を利用する有機−無機ハイブリッド材料, 有機・無機ハイブリッドと組織再生材料, (株)アイ・ピー・シー, 東京, 225-240, 2002

2001

  1. 菊池正紀, 田中順三, 自己組織化機構によるナノコンポジット構造の制御−骨類似アパタイト・コラーゲン複合体−, New Glass, 16(4), 9-12 (2001)
  2. Dong J, Kojima H, Uemura T, Kikuchi M, Tateishi T, Tanaka J., In Vivo Evaluation of a Novel Porous Hydroxyapatite to Sustain Osteogenesis of Transplanted Bone Marrow-Derived Osteoblastic Cells., J Biomed Mater Res, 57(2), 208-216, DOI:10.1002/1097-4636(200111)57:2<208::AID-JBM1160>3.0.CO;2-N (2001)
  3. J.Dong, T.Uemura, H.Kojima, M.Kikuchi, J.Tanaka, T.Tateishi, Application of Low Pressure System to Sustain In Vivo Bone Formation in Osteoblast/Porous Hydroxyapatite Composite, Mat. Sci. Eng. C (special Issue) , 17, 37-43 (2001)
  4. Wang PL., Oido-Mori M., Fujii T., Kowashi Y., Kikuchi M., Suetsugu Y., Tanaka J., Azuma Y., Shinohara M., Ohura K., Heterogenous Expression of Toll-Like Receptor 4 and Downregulation of Toll-Like Receptor Expression on Human Gingival Fibroblasts by Porphyromonas Gingivalis Lipopolysaccharide, Biochemical and Biophysical Research Communications, 288, 863-867, DOI:10.1006/bbrc.2001.5842 (2001)
  5. Masanori Kikuchi, Soichiro Itoh, Shizuko Ichinose, Kenichi Shinomiya and Junzo Tanaka, Self-Organization Mechanism in a Bone-Like Hydroxyapatite / Collagen Nanocomposite Synthesized In Vitro and Its Biological Reaction In Vivo, Biomaterials, 22(13), 1705-1711, DOI:10.1016/S0142-9612(00)00305-7 (2001)
  6. Chang MC, Ikoma T, Kikuchi M, Tanaka J, Preparation of a Porous Hydroxyapatite/Collagen Nanocomposite Using Glutaraldehyde as a Crosslinkage Agent, Journal of Materials Science Letters, 20(13), 1199-1201, DOI:10.1023/A:1010914621089 (2001)
  7. Soichiro Itoh, Masanori Kikuchi, Kazuo Takakuda, Yoshihisa Koyama, Hiroko N. Matsumoto, Shizuko Ichinose, Junzo Tanaka, Toshiyuki Kawauchi and Kenichi Shinomiya, The Biocompatibility and Osteoconductive Activity of a Novel Hydroxyapatite/Collagen Composite Biomaterial, and Its Function as a Carrier of Rhbmp-2, Journal of Biomedical Materials Research, 54[3], 445-453, DOI:10.1002/1097-4636(20010305)54:3<445::AID-JBM190>3.0.CO;2-9 (2001)
  8. Soichiro Itoh, Kazuo Takakuda, Shizuko Ichinose, Masanori Kikuchi, Kenichi Shinomiya, A Study on Induction of Nerve Regeneration Using Bioabsorbable Tubes, J Reconstr. Microsurg., 17(2), 115-123 (2001)

2000

  1. 萬代佳宣, 平岡陽介, 田中順三, 菊池正紀, 生体骨に近い生物特性を持つアパタイト/コラーゲン複合体性人工骨, 工業材料, 48 (11), 77-80 (2000)
  2. 菊池正紀、田中順三、伊藤聰一郎、小山富久、高久田和夫、宮入裕夫, 骨系細胞誘導機能をもつHAp/Collagenナノコンポジットのbiomimetic合成, インテリジェント材料, 10(1), 14-18 (2000)
  3. Masanori Kikuchi, Junzo Tanaka, Chemical Interaction in β-Tricalcium Phosphate / Copolymerized Poly-L-Lactide Composites, Journal of Ceramic Society of Japan, 108(1259), 642-645 (2000)
  4. 田中順三, 菊池正紀, 生駒俊之, 自家骨に変わる複合材料, マテリアルインテグレーション, 13, 7-12 (2000)
  5. 古薗勉, 菊池正紀, 田中順三, バイオセラミックスの開発動向−有機複合体への新しい試み−, Fcレポート, 18, 38-42 (2000)
  6. 田中順三、菊池正紀(監修:川合知二), 本当の骨に変わる人工骨, 図解 ナノテクノロジーのすべて, (株)工業調査会, 東京, 228-231, 2001
  7. 菊池正紀, 田中順三(長田義仁、甲斐昌一、嘉数侑昇、片岡一則、酒井清孝、田中順三編), コラーゲンと無機化合物, バイオミメティックハンドブック (handbook of Biomimetics), 株式会社エヌ・ティー・エス、東京, 479-482, 2000
  8. 田中順三, 菊池正紀(角田方衛, 筏義人, 立石哲也編), セラミックス材料, 金属系バイオマテリアルの基礎と応用, (株)アイ・ピー・シー, 東京, 554-569, 2000

1999

  1. 田中順三, 菊池正紀, コラーゲンと無機化合物の複合化, 表面科学, 20, 600-606, DOI:10.1380/jsssj.20.600 (1999)
  2. Masanori Kikuchi, Junzo Tanaka, Yoshihisa Koyama, Kazuo Takakuda, Cell Culture Test of TCP/CPLA Composite, J. Biomed. Mater. Res. (appl. Biomate.), 48, 108-110, DOI:10.1002/(SICI)1097-4636(1999)48:2<108::AID-JBM2>3.0.CO;2-F (1999)
  3. 田中順三, 菊池正紀, バイオミメティックス生体材料の開発, セラミックス, 34, 543-546 (1999)
  4. Pao-Li Wang, Shinya Shirasu, Mitsuki Shinohara, Michihatu Daito, Masanori Kikuchi, Yasushi Suetsugu, Junzo Tanaka, Kiyoshi Ohura, The Signal Transduction Pathway from Porphyromonas Gingivalis Lps-Stimulated Gingivalis Fibroblasts to Osteoclast Activation, Medical Sci. Res., 27, 311-313, DOI:10.1254/jjp.89.176 (1999)
  5. 菊池正紀, 藤沢章, 服部昌晃, バイオセラミックスの新しい応用, セラミックス, 34(1), 42-46 (1999)
  6. 小山富久, 高久田和夫, 菊池正紀, 田中順三, 松本裕子, 宮入裕夫, 青木美香, 永岡勝好, 小坂俊文, 田中茂男, β−tcp/ポリ乳酸系コポリマー膜による骨再建 第3報骨膜移植による骨再建, 顎顔面バイオメカニクス学会誌, 5-1, 39-40 (1999)
  7. 菊池正紀, 田中順三, 有機/無機複合人工骨材料の開発, 有機・無機ハイブリッド材料・技術資料集, , 260-264 (1999)

1998

  1. 菊池正紀, 田中順三, 有賀利郎, 田代豊, βリン酸三カルシウム/ポリ乳酸共重合体複合体の生理食塩水中における機械的強度変化, 無機マテリアル, 5, 493-497 (1998)
  2. 菊池正紀, 趙晟佰, 田中順三, 小山富久, 小林孝之, 高久田和夫, 赤尾勝, β−リン酸三カルシウム/ポリ乳酸共重合体複合体の作製と生体親和性, 粉体及び粉末冶金, 45, 36-40 (1998)

1997

  1. Masanori Kikuchi, Yasushi Suetsugu, Junzo Tanaka, Masaru Akao, Preparation and Mechanical Properties of Calcium Phosphate/Copoly-L-Lactide Composites, J. Mater. Sci., Mater. in Med., 8, 361-364., DOI:10.1023/A:1018580816388 (1997)

1996

  1. Masanori Kikuchi, Atsushi Yamazaki, Masaru Akao, Hideki Aoki, Cytotoxicity of Symthetic Barium Hydroxyapatite, Biomed. Mater. Eng., 6, 405-413 (1996)
  2. Masanori Kikuchi, Atsushi Yamazaki, Masaru Akao, Hideki Aoki, Thermal Changes in Synthetic Deuterioxyapatite, Mineralogical J., 18, 79-86 (1996)
  3. Tohru Takagi, Ryuichi Fujisawa, Masaru Akao, Masanori Kikuchi, Noriyuki Nagai, Satoshi Sasaki, Effects of Bovine Amelogenin and Enamelin on In Vitro Mineralization in Gel, J. Hard Tissue Biology, 5(1), 15-22 (1996)
  4. 菊池正紀, 趙晟佰, 田中順三, 新しい人工骨材料の開発-有機-無機複合化技術-, Bio Industry, 13, 28-34 (1996)

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