2023 - 2024 Practical application of bone regenerative medicine: Construction of 3D pellet culture model using pluripotent stem cells
2022 - 2024 骨オルガノイド構築と骨細胞分化機構の解明
2021 - 2024 Morphogenesis-based Manufacturing: Construction of optimal structures based on mechanical response of cells
2023 - Emerging technologies to study biomechanical and mechanobiological characterization of bone, cartilage, muscle and tendon
2022 - 2023 3次元培養モデルを用いた静水圧負荷による骨細胞分化制御に関する研究
2021 - 2023 Development of 4D measurement technology for bone-cartilage formation dynamics using 3D tissue-engineered constructs
2020 - 2023 Reconstruction of three-dimensional osteochondral model by multilayered scaffold-free tissue
2019 - 2021 Establishment of mass-productive fabrication method and new applications for bone organoids reconstructed by rotatory culture toward bone reconstruction
2017 - 2019 Uterine regeneration and development of uterine implantation patch using decellularized matrix and mechanical stimuli
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Papers (27):
Jeonghyun Kim, Kotone Niioka, Eijiro Maeda, Takeo Matsumoto. Application of hydrostatic pressure up-regulates sost gene expression in osteocytic spheroids. Bioscience, Biotechnology, and Biochemistry. 2025. 89. 2. 263-267
Takashi Inagaki, Jeonghyun Kim, Maeda Eijiro, Takeo Matsumoto. Macroscopic creep behavior of spheroids derived from mesenchymal stem cells under compression. Journal of the Mechanical Behavior of Biomedical Materials. 2025. 161. 106816
Takeshi Kasahara, Machiko Teramoto, Kiyokazu Agata, Jeonghyun Kim, Takeo Matsumoto, Eijiro Maeda. Functional analysis of regenerated digit in newt following complete amputation at proximal interphalangeal joint. Journal of Biomechanical Science and Engineering. 2024
Kosei Tomida, Jeonghyun Kim, Eijiro Maeda, Taiji Adachi, Takeo Matsumoto. Spatiotemporal analysis of multi-scale cell structure in spheroid culture reveals hypertrophic chondrocyte differentiation【Selected as Cover Image】. Cell and Tissue Research. 2024. 397. 3. 263-274
Yuto Takahashi, Satoru Ito, Jungfeng Wang, Jeonghyun Kim, Takeo Matsumoto, Eijiro Maeda. Novel air-liquid interface culture model to investigate stiffness-dependent behaviors of alveolar epithelial cells. Biochemical and Biophysical Research Communications. 2024. 708. 149791
2021/12 - The Outstanding Abstract Award Runner-up
2021/06 - Journal of Biomechanical Science and Engineering 2020 JBSE Papers of the Year Award
2021/06 - Journal of Biomechanical Science and Engineering 2020 JBSE Graphics of the Year Award
2019/11 - Asian-Pacific Association for Biomechanics The Yamaguchi Medal
2019/08 - The 4th Africa International Biotechnology and Biomedical Conference The Best Oral Presentation Award
2019/02 - 10th Annual Meeting of the Korean Scientists and Engineers Association in Japan The Academic Excellence Award
2018/07 - The 8th World Congress of Biomechanics The Outstanding Young Researcher Presentation Award
2016/10 - Japanese Journal of Clinical Biomechanics The Best Paper Award Involvement of the mTOR pathway in redifferentiation of bovine chondrocytes under dynamic hydrostatic loading
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Association Membership(s) (6):
日本バイオレオロジー学会
, Japanese Society for Medical and Biological Engineering
, European Society of Biomechanics
, Korean Scientists and Engineers Associate in Japan
, Japanese Society for Regenerative Medicine
, Japan Society of Mechanical Engineers