Rchr
J-GLOBAL ID:201801019037767051   Update date: Dec. 25, 2023

Aoyama Eriko

アオヤマ エリコ | Aoyama Eriko
Research field  (1): Oral medicine
Research keywords  (4): 生化学 ,  骨代謝 ,  biological chmistry ,  bone metabolism
Research theme for competitive and other funds  (40):
  • 2023 - 2027 Development of dropletomics that clarifies transcriptional regulation under liquid-liquid phase separation
  • 2023 - 2026 Intracellular proteostatic function of CCN2 in chondrocytes during endochondral ossification
  • 2022 - 2025 S-アデノシルメチオニンによる軟骨基質産生の新制御機構の解明-ポリアミンを中心に
  • 2022 - 2025 象牙芽細胞の表面に突き出た細胞小器官の機能解析と象牙質再生への応用
  • 2021 - 2025 Regulation of skeletogenesis by long noncoding RNAs through CCN2
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Papers (74):
  • Loc Dinh Hoang, Eriko Aoyama, Miki Hiasa, Hiroshi Omote, Satoshi Kubota, Takuo Kuboki, Masaharu Takigawa. Positive Regulation of S-Adenosylmethionine on Chondrocytic Differentiation via Stimulation of Polyamine Production and the Gene Expression of Chondrogenic Differentiation Factors. International Journal of Molecular Sciences. 2023. 24. 24. 17294-17294
  • Yusuke Kamatsuki, Eriko Aoyama, Takayuki Furumatsu, Toshifumi Ozaki, Masaharu Takigawa. The Evaluation of Meniscus Regenerative Effects 2 of LIPUS-Induced CCN Proteins: Induction by LIPUS of CCN2 3 and Meniscus-Related Genes in Cultured Meniscus Cells 4 and Meniscus Tissues. Methods in Molecular Biology. 2023. 2582. 223-235
  • Eriko Aoyama, Masaharu Takigawa. Evaluation of the Molecular Interaction Between CCN 2 Protein and Its Binding Partners: A Solid-Phase Binding 3 Assay and Surface Plasmon Resonance. Methods in Molecular Biology. 2023. 2582. 77-86
  • Mitsuhiro Hoshijima, Eriko Aoyama, Hiroshi Kamioka, Masaharu Takigawa. Imaging of Molecular Interaction Between CCN Protein 2 and Its Binding Partners: An In Situ Proximity Ligation 3 Assay of Interaction Between CCN2 and Rab14 4 in Chondrocytes. Methods in Molecular Biology. 2023. 2582. 31-37
  • ホアンディン・ロック, 青山 絵理子, 久保田 聡, 窪木 拓男, 滝川 正春. S-アデノシルメチオニンはポリアミン産生だけでなく増殖因子の遺伝子発現を促進することによって軟骨分化を促進する(S-adenosylmethionine induces chondrocytic differentiation not only as source of polyamine production but also by stimulating growth factor genes expression). Journal of Oral Biosciences Supplement. 2022. 2022. 134-134
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MISC (92):
  • LOC Hoangdinh, LOC Hoangdinh, 青山絵理子, 日浅未来, 表弘志, 久保田聡, 窪木拓男, 滝川正春. S-adenosylmethionine promotes chondrocyte differentiation via polyamine synthesis and gene expression of growth factors. 日本軟骨代謝学会プログラム・抄録集. 2023. 35th
  • 東原直裕, 東原直裕, 東原直裕, 青山絵理子, 古松毅之, 久保田聡, 尾崎敏文, 滝川正春. The effects of binding of CCN2 to GDF5 and its receptors on chondrocytes. 日本軟骨代謝学会プログラム・抄録集. 2023. 35th
  • 東原直裕, 東原直裕, 青山絵理子, 古松毅之, 久保田聡, 尾崎敏文, 滝川正春. GDF5およびその受容体との結合を介したCCN2の軟骨細胞分化制御機構. 日本整形外科学会雑誌. 2023. 97. 8
  • 河田かずみ, 青山絵理子, 滝川正春, 久保田聡. Intraflagellar transport protein88によるHippo経路と古典的WNT経路を介した象牙芽前駆細胞増殖制御の可能性. Journal of Oral Biosciences Supplement (Web). 2023. 2023
  • 東原直裕, 東原直裕, 青山絵理子, 古松毅之, 久保田聡, 尾崎敏文, 滝川正春. Physiological significance of binding of GDF5 and CCN2 on chondrocytes. 日本軟骨代謝学会プログラム・抄録集. 2022. 34th
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Education (2):
  • - 2005 Okayama University
  • - 2005 Okayama University Graduate School, Division of National Science and Technology
Professional career (1):
  • Doctor (Pharmacy) (Okayama University)
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