Updated on 2024/06/10

Information

 

写真a

 
TAKEMURA YOKO
 
Organization
Kyushu University Hospital Removable Prosthodontics Assistant Professor
Abolition organization Oral Rehabilitation(Concurrent)
Title
Assistant Professor
Contact information
メールアドレス
Tel
0926426440
Profile
九州大学病院義歯補綴科にて臨床に従事しつつ、歯学部5,6学生、歯学府大学院生の臨床指導を行っている。歯学部4年生の全部床義歯補綴学基礎実習、部分床義歯補綴学基礎実習のライターとして教育指導を担っている。研究においては、インプラント周囲骨代謝に着目した細胞実験、動物実験を行い、学会発表、論文発表を行っている。
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Degree

  • Phd, DDS

Research Interests・Research Keywords

  • Research theme: Osteocytes are involved in strain-related bone remodeling around dental implant.

    Keyword: osteocyte, dental implant, mechanical stress

    Research period: 2014.4 - 2023.3

Awards

  • デンツプライ・シロナ賞

    2017.9   日本口腔インプラント学会  

  • 課題口演賞

    2017.6   日本補綴歯科学会  

Papers

  • Influence of osteoporosis and mechanical loading on bone around osseointegrated dental implants: a rodent study. Invited Reviewed International journal

    Chen X, Moriyama Y, Takemura Y, Rokuta M, Ayukawa Y.

    Journal of the Mechanical Behavior of Biomedical Materials.   2021.11

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    Language:English   Publishing type:Research paper (scientific journal)  

  • The Significance of Posterior Occlusal Support of Teeth and Removable Prostheses in Oral Functions and Standing Motion Invited Reviewed International journal

    Oki K, Ogino Y, Takamoto Y, Imai M, Takemura Y, Ayukawa Y, Koyano K.

    International Journal of Environmental Research and Public Health   2021.6

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    Language:English   Publishing type:Research paper (scientific journal)  

  • Mechanical loading induced osteocyte apoptosis and connexin 43 expression in three-dimensional cell culture and dental implant model Reviewed

    Yoko Takemura, Yasuko Moriyama, Yasunori Ayukawa, Kosaku Kurata, Yunia D. Rakhmatia, Kiyoshi Koyano

    Journal of Biomedical Materials Research - Part A   107 ( 4 )   815 - 827   2019.4

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    Language:English   Publishing type:Research paper (scientific journal)  

    Osteocytes are thought to act as stress sensors, and are known to display a gap junction-mediated stress-transfer mechanism. To demonstrate the stress-related function of osteocytes, cells of an osteocyte-like cell line derived from murine long bone osteocyte Y4 (MLO-Y4) were cultivated in a three-dimensional culture and subjected to cyclic loading from a titanium plate. This application of physiological loading using a titanium plate significantly increased connexin 43 (Cx43) expression, the number of dead and apoptotic cells, and receptor activator of nuclear factor κB ligand expression. Furthermore, the conditioned medium from the loaded osteocytes induced alkaline phosphatase activity in bone marrow cell culture. In addition, we immunohistologically determined whether bone metabolism increased as a result of the occlusal force in the bone surrounding the titanium implants in a rat model. Increased Cx43 expression and apoptotic osteocytes were observed in the loading group as well as a significantly increased number of tartrate-resistant acid phosphatase-positive cells. These findings indicate that stress from the implant adversely affected the osteocytes, which may promote osteoclastic and osteoblastic cell formation around the implants.

    DOI: 10.1002/jbm.a.36597

  • Effect of a Single Injection of Benidipine-Impregnated Biodegradable Microcarriers on Bone and Gingival Healing at the Tooth Extraction Socket Reviewed

    Mikio Imai, Yasunori Ayukawa, Noriyuki Yasunami, Akihiro Furuhashi, Yoko Takemura, Naomi Adachi, Jiangqi Hu, Xudiyang Zhou, Yasuko Moriyama, Atsuta Ikiru, Kosaku Kurata, Kiyoshi Koyano

    Advances in Wound Care   8 ( 3 )   108 - 117   2019.3

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    Language:English   Publishing type:Research paper (scientific journal)  

    Objective: A dihydropyridine-type calcium channel blocker, benidipine (BD), is extensively used in hypertension therapy. In vitro study reported BD promoting bone metabolism. We evaluated the effect of sustained release of BD-loaded poly(lactic-co-glycolic acid) (PLGA) microcarriers on the promotion of bone and gingival healing at an extraction socket in vivo. In addition, the effect of BD on osteoblasts, osteocytes, fibroblasts, and epithelial cells was evaluated in vitro. Approach: The maxillary first molar of rats was extracted. Next, PLGA microcarriers containing BD were directly injected into the gingivobuccal fold as a single dose. After injection, bone and soft-tissue healing was histologically evaluated. Effect of BD on proliferation, migration, and gene expression of gingival and bone cell was also examined in vitro. Results: After tooth extraction, BD significantly augmented bone volume and density, and also epithelial wound healing. During in vitro studies, BD promoted significant proliferation and migration of fibroblasts and epithelial cells. Real-time RT-PCR revealed that BD upregulated messenger RNA expression of Ahsg (alpha 2-HS glycoprotein) and Csf2 (colony-stimulating factor 2) in osteoblasts. Innovation: The prevention of bone and soft-tissue reduction associated with tooth extraction has been eagerly anticipated in the field of dentistry. This study first reported the effect of BD on extraction socket healing. Conclusion: A single dose of topically administered BD-loaded PLGA microcarriers promoted bone and soft-tissue healing at the extraction site of tooth.

    DOI: 10.1089/wound.2018.0834

  • Generation and histomorphometric evaluation of a novel fluvastatin-containing poly(lactic-co-glycolic acid) membrane for guided bone regeneration Reviewed

    Haomiao Zhang, Yasuko Moriyama, Yasunori Ayukawa, Yunia Dwi Rakhmatia, Yoko Takemura, Noriyuki Yasunami, Kiyoshi Koyano

    Odontology   107 ( 1 )   37 - 45   2019.1

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    Language:English   Publishing type:Research paper (scientific journal)  

    The purpose of this study was to evaluate the effects of a poly(lactic-co-glycolic acid) (PLGA) membrane containing fluvastatin on bone regeneration at bone defects in rat calvaria and tibia for possible use as a guided bone regeneration (GBR) membrane. PLGA and fluvastatin-containing PLGA (PLGA–fluvastatin) membranes were prepared and mechanical properties were evaluated. Standardized bony defects were created in rat calvaria and the right tibia, and covered with a PLGA or PLGA–fluvastatin membrane. Bone regeneration was evaluated using image analysis based on histologic examination. At 4 and 8 weeks after membrane implantation, the PLGA–fluvastatin group displayed enhanced new bone formation around the edge of the defect compared with the PLGA membrane group in the calvarial model. Thick bone regeneration was observed in tibia-defect sites in the PLGA–fluvastatin membrane group. These results suggest that the PLGA-containing fluvastatin membrane prepared in this study may potentially be used as a GBR membrane.

    DOI: 10.1007/s10266-018-0376-z

  • Prosthetic aspects in adult osteopetrosis Reviewed

    Yoichiro Ogino, Yasunori Ayukawa, Yoko Takemura, Kiyoshi Koyano

    Journal of Prosthetic Dentistry   112 ( 4 )   736 - 740   2014.1

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    Language:English   Publishing type:Research paper (scientific journal)  

    Osteopetrosis (OP) is a rare condition characterized by skeletal sclerosis caused by dysfunctional osteoclasts. Though many reports have described severe infantile-malignant autosomal recessive OP, few have described the prosthetic management of adult OP. This report discusses the prosthetic treatment of adult OP. Although prosthodontists should try to reconstruct occlusal function as much as possible, a conservative prosthodontic approach may be a reasonable and recommended treatment option for minimizing the risk of further osteomyelitis and osteonecrosis.

    DOI: 10.1016/j.prosdent.2014.04.007

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Presentations

  • 臼歯部咬合支持は高齢者の起立動作能力の維持,向上に有効である.

    大木郷資. 今井実喜生. 竹村陽子 ,荻野洋一郎. 築山能大. 古谷野潔.

    日本補綴歯科学会第130回記念学術大会.  2021.6 

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    Event date: 2022.5

    Language:Japanese  

    Country:Japan  

  • 高齢者の臼歯部咬合支持が起立動作能力に与える影響について

    @大木郷資, @松村英尚, @今井実喜生, @竹村陽子, #木下康平,#松中健, @大川千晶, #末次紀文, @荻野洋一郎, @鮎川保則, @築山能大, @古谷野潔.

    第8回日本フレイル・サルコペ二ア学会  2021.11 

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    Event date: 2022.5

    Language:Japanese  

    Country:Japan  

  • 咬合荷重下におけるインプラント周囲骨代謝への骨細胞の関与

    冨田陽子,森山泰子,鮎川保則,張浩淼,今井実喜生,古谷野潔

    公益社団法人日本補綴歯科学会第126回学術大会  2017.6 

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    Event date: 2019.6

    Language:Japanese  

    Venue:横浜   Country:Japan  

  • インプラント周囲骨代謝と骨細胞の力学応答の関連

    冨田 陽子,森山 泰子,鮎川 保則,古谷野 潔

    第46回公益社団法人日本口腔インプラント学会学術大会  2016.9 

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    Event date: 2019.6

    Language:Japanese  

    Venue:名古屋   Country:Japan  

  • Osteocyte Network Regulated by Mechanical Stress Activates Peri-implant Bone Remodeling International conference

    Tomita Y., Moriyama Y., Ayukawa Y., Kurata K., Zhang H., Koyano K.

    94th General Session & Exhibition of the IADR  2016.6 

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    Event date: 2019.6

    Language:English  

    Venue:Seoul   Country:Korea, Republic of  

MISC

  • CBCTを使用した歯肉厚さの評価と歯肉貫通プロービングとの比較および歯肉厚さと唇側骨欠損の相関:横断研究.

    竹村陽子, 鮎川保則

    2023.5

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    Language:Japanese  

Professional Memberships

  • 日本口腔インプラント学会

  • 日本補綴歯科学会

Research Projects

  • インプラント周囲炎による骨欠損の完全回復を目指した新規抗菌性骨補填材の開発

    Grant number:23K09277  2023 - 2027

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

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    Authorship:Principal investigator  Grant type:Scientific research funding

  • 長期に安定したインプラント治療を実現するインプラント周囲骨リモデリングの解明

    Grant number:20K18606  2020 - 2022

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Early-Career Scientists

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    Authorship:Principal investigator  Grant type:Scientific research funding

  • インプラントにおける生物学的研究:埋入部の骨再生にかかわる研究

    2019

    研究活動支援制度による研究補助者雇用支援(短期)

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    Authorship:Principal investigator  Grant type:On-campus funds, funds, etc.

  • 骨細胞の咬合力応答に着目したインプラント周囲骨代謝バランスの解明

    Grant number:17K17179  2017 - 2019

    Grants-in-Aid for Scientific Research  Grant-in-Aid for Young Scientists(A)or(B)

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    Authorship:Principal investigator  Grant type:Scientific research funding

  • 咬合荷重下のインプラント周囲骨細胞におけるメカノレスポンスの解明

    Grant number:16H07060  2016

    Grants-in-Aid for Scientific Research  Grant-in-Aid for Young Scientists (Start-up)

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    Authorship:Principal investigator  Grant type:Scientific research funding

Class subject

  • 部分床義歯補綴学

    2024.10 - 2025.3   Second semester

  • 歯科臨床実習

    2024.4 - 2025.3   Full year

  • 全部床義歯補綴学

    2024.4 - 2024.9   First semester

  • 部分床義歯補綴学

    2023.10 - 2024.3   Second semester

  • 歯科臨床実習

    2023.4 - 2024.3   Full year

  • 全部床義歯補綴学

    2023.4 - 2023.9   First semester

  • 部分床義歯補綴学

    2022.10 - 2023.3   Second semester

  • 歯科臨床実習

    2022.4 - 2023.3   Full year

  • 全部床義歯補綴学

    2022.4 - 2022.9   First semester

  • 部分床義歯補綴学

    2021.10 - 2022.3   Second semester

  • 全部床義歯補綴学

    2021.4 - 2021.9   First semester

  • 部分床義歯学

    2019.10 - 2020.3   Second semester

  • リサーチ・エクスポージャ

    2019.4 - 2020.3   Full year

  • 全部床義歯学

    2019.4 - 2019.9   First semester

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Outline of Social Contribution and International Cooperation activities

  • 地域の歯科医院と緊密な連絡を取りながら歯科医療を行っている。大学院留学生の指導を行っている。

Specialized clinical area

  • Biology / Medicine, Dentistry and Pharmacy / Dentistry / Prosthetic Science and Engineering Dentistry

Clinician qualification

  • Certifying physician

    日本補綴歯科学会

Year of medical license acquisition

  • 2013