Rchr
J-GLOBAL ID:201401076726784650   Update date: Aug. 22, 2023

Saito Mari M

サイトウ マリ | Saito Mari M
Affiliation and department:
Research field  (6): Regenerative dentistry and dental engineering ,  Conservative dentistry and endodontics ,  Molecular biology ,  Molecular biology ,  Molecular biology ,  Regenerative dentistry and dental engineering
Research theme for competitive and other funds  (9):
  • 2023 - 2027 Creation of Semi-crystalline Apatite Amorphous Complexes with Cell Recognition Functions and Their Application to Large Area Caries Repair
  • 2022 - 2026 歯周組織を非晶質リン酸カルシウムの相転移で再生する次世代歯科インプラントの開発
  • 2022 - 2026 Basic research on the development of periodontal tissue regenerative implants using titanium-binding proteins and cytokines
  • 2019 - 2024 Bone and tooth differentiation induced by BMP and rapamycin
  • 2020 - 2023 Root-caries repair agent developed using reverse phase transformation from apatite to octacalcium phosphate
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Papers (20):
  • Mari M. Saito, Kazuo Onuma, Yasuo Yamakoshi. Cementum is key to periodontal tissue regeneration: A review on apatite microstructures for creation of novel cementum-based dental implants. genesis. 2023. 61. 3-4. e23514
  • Yasuo Yamakoshi, Risako Chiba-Ohkuma, Yukihiko Hidaka, Kazuo Onuma, Ryuji Yamamoto, Mari M Saito, Takeo Karakida. Repurposing MDZ as a tool for tissue regeneration in dental cells. Journal of oral biosciences. 2022. 64. 1. 37-42
  • Kazuo Onuma, Mari M Saito, Yasuo Yamakoshi, Mayumi Iijima, Yu Sogo, Koichi Momma. Coherent surface structure induces unique epitaxial overgrowth of metastable octacalcium phosphate on stable hydroxyapatite at critical fluoride concentration. Acta biomaterialia. 2021. 125. 333-344
  • Mari M Saito, Kazuo Onuma, Ryuji Yamamoto, Yasuo Yamakoshi. New insights into bioactivity of ceria-stabilized zirconia: Direct bonding to bone-like hydroxyapatite at nanoscale. Materials science & engineering. C, Materials for biological applications. 2021. 121. 111665-111665
  • 斉藤 まり, 山本 竜司, 山越 康雄. 骨ハイドロキシアパタイト結晶とセリア系ジルコニアがもたらすナノスケールオッセオインテグレーション. Journal of Oral Biosciences Supplement. 2020. 2020. 279-279
more...
MISC (23):
  • 日高亨彦, 大熊理紗子, 唐木田丈夫, 小沼一雄, 山本竜司, 阿部佳子, 斉藤まり, 山越康雄, 河原博. C2C12細胞から骨芽細胞への分化誘導のためのmidazolamとBMP-2の併用効果. 歯科薬物療法. 2020. 39. 2. 58-58
  • 唐木田丈夫, 日高亨彦, 小沼一雄, 山本竜司, 斉藤まり, 大熊理紗子, 山越康雄. 象牙芽細胞分化と象牙質形成に及ぼす麻酔導入剤ミダゾラムのドラッグ・リポジショニング効能. 歯科薬物療法. 2020. 39. 2. 58-58
  • 唐木田丈夫, 日高亨彦, 小沼一雄, 山本竜司, 斉藤まり, 千葉(大熊)理紗子, 山越康雄. Drug Repositioning Efficacy of Midazolam on Hard Tissue Forming Cells. Journal of Oral Biosciences Supplement (Web). 2020. 2020
  • 日高亨彦, 大熊理紗子, 唐木田丈夫, 山本竜司, 阿部佳子, 斉藤まり, 山越康雄, 河原博. Drug repositioning of midazolam in the induction of differentiation from C2C12 cells to osteoblasts. Journal of Oral Biosciences Supplement (Web). 2020. 2020
  • 唐木田丈夫, 山本竜司, 斉藤まり, 千葉理紗子, 山越康雄. 歯髄細胞から象牙芽細胞分化に及ぼすミダゾラムのドラッグ・リポジショニング効能. Journal of Oral Biosciences Supplement (Web). 2019. 2019
more...
Lectures and oral presentations  (14):
  • ブタ不死化歯髄細胞の象牙芽細胞分化に及ぼすミダゾラムの影響
    (Journal of Oral Biosciences Supplement 2018)
  • ミダゾラムとBMP-2の併用によるマウス筋芽細胞由来C2C12細胞の石灰化物形成について
    (Journal of Oral Biosciences Supplement 2018)
  • Er:YAGおよび半導体レーザーによるブタ歯髄細胞および歯髄組織への影響
    (Journal of Oral Biosciences Supplement 2018)
  • 歯髄細胞のスフェロイド形成に及ぼすTGF-βとBMPの影響
    (Journal of Oral Biosciences Supplement 2017)
  • 形成過程のエナメル質中のケラチン75について
    (Journal of Oral Biosciences Supplement 2017)
more...
Education (2):
  • 2010 - 2014 Tsurumi University Graduate School of Dental Medicine Doctor of Philosophy in Dental Science [Ph.D.(D.Sc.)]
  • 2003 - 2009 Tsurumi University School of Dental Medicine
Professional career (1):
  • 博士(歯学) (鶴見大学)
Work history (4):
  • 2018/04 - 現在 Tsurumi University School of Dental Medicine
  • 2015/04 - 2018/03 Tsurumi University School of Dental Medicine
  • 2016 - 2016 University of Michigan School of Dentistry Department of Biologic Materials and Sciences Academic Affiliate
  • 2014/04 - 2015/03 Tsurumi University School of Dental Medicine
Awards (1):
  • 2022/09 - JAOB/Rising Members Award New insights into bioactivity of ceria-stabilized zirconia: Direct bonding to bone-like hydroxyapatite at nanoscale
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