Shi Ting Lee, Thasaneeya Kuboki, Satoru Kidoaki, Yukiko Aida, Sou Ryuzaki, Koichi Okamoto, Yusuke Arima, Kaoru Tamada. Transient Nascent Adhesion at the Initial Stage of Cell Adhesion Visualized on a Plasmonic Metasurface. Advanced Nanobiomed Research. 2021
Rika Umemiya-Shirafuji, Jinlin Zhou, Min Liao, Badgar Battsetseg, Damdinsuren Boldbaatar, Takeshi Hatta, Thasaneeya Kuboki, Takeshi Sakaguchi, Huey Shy Chee, Takeharu Miyoshi, et al. Data from expressed sequence tags from the organs and embryos of parthenogenetic Haemaphysalis longicornis. BMC research notes. 2021. 14. 1. 326-326
Fahsai Kantawong, Yasumin Chaiyasert, Nichanun Bungkhuan, Kanyamas Choocheep, Warunee Kumsaiyai, Penpitcha Wanachantararak, Thasaneeya Kuboki. Transcriptomic change of human gingival cells during cultivation on gelatin composite hydroxyapatite and pig brain extract. Journal of Associated Medical Sciences. 2021. 54. 3. 125-134
Satoru Kidoaki, Hiroyuki Ebata, Kousuke Moriyama, Thasaneeya Kuboki, Yukie Tsuji, Rumi Sawada, Ken Kono, Kazusa Tanaka. Mechano-Activation of Mesenchymal Stem Cells by Avoiding Intracellular Tensional Equilibrium on Matrix with Stiffness-Heterogeneity. Biophysical Journal. 2021. 120. 3. 64a-64a
Kidoaki Satoru, Hamano Kouske, Kuboki Thasaneeya. GS1-3 TRACTION FORCE MICROSCOPY OF MESENCHYMAL STEM CELLS IN MODE OF FRUSTRATED DIFFERENTIATION(GS1: Cell and Tissue Biomechanics I). Proceedings of the ... Asian Pacific Conference on Biomechanics : emerging science and technology in biomechanics. 2015. 2015. 8. 118-118
Elucidation of substrate stiffness mediated rejuvenation mechanism of aging stem cells through the mechano-regulation of cellular homeostasis
(Molecular Biology Society of Japan 2023)
Understanding the mecahno-regulation of substrate stiffness on rejuvenation mechanism of aging stem cells
(The Japan Society of Mechanical Engineers 2022)
Elucidation of substrate stiffness mediated rejuvenation mechanism of aging stem cells through the regulation of cellular homeostasis
(Japanese Biochemical Society 2023)
Understanding the mecahno-regulation of substrate stiffness on rejuvenation mechanism of aging stem cells.
(Molecular Biology Society of Japan 2022)
Understanding the mecahno-regulation of substrate stiffness on rejuvenation mechanism of aging stem cell
(world congress of biomechanics 2022)