Showing results (1-10 of 131) with videos related to
Sort By:
Pageof 14
Soft Matter|July 26, 2023
Tunable enzymatically degradable hydrogels for controlled cargo release with dynamic mechanical propertiesRiho Tanimoto, Mitsuhiro Ebara, Koichiro UtoPolymers|November 11, 2022
Influences of Crystallinity and Crosslinking Density on the Shape Recovery Force in Poly(ε-Caprolactone)-Based Shape-Memory Polymer BlendsAilifeire Fulati, Koichiro Uto, Mitsuhiro EbaraInternational Journal of Molecular Sciences|January 24, 2014
Temperature-responsive poly(ε-caprolactone) cell culture platform with dynamically tunable nano-roughness and elasticity for control of myoblast morphologyKoichiro Uto, Mitsuhiro Ebara, Takao AoyagiTheranostics|December 1, 2017
Material-induced Senescence (MIS): Fluidity Induces Senescent Type Cell Death of Lung Cancer Cells via Insulin-Like Growth Factor Binding Protein 5Sharmy Saimon Mano, Koichiro Uto, Mitsuhiro EbaraInternational Journal of Molecular Sciences|January 10, 2026
Correction: Mano et al. Fluidity of Poly (ε-Caprolactone)-Based Material Induces Epithelial-to-Mesenchymal Transition. <i>Int. J. Mol. Sci.</i> 2020, <i>21</i>, 1757Sharmy Saimon Mano, Koichiro Uto, Mitsuhiro EbaraInternational Journal of Molecular Sciences|March 8, 2020
Fluidity of Poly (ε-Caprolactone)-Based Material Induces Epithelial-to-Mesenchymal TransitionSharmy Saimon Mano, Koichiro Uto, Mitsuhiro EbaraBiomaterials Science|November 11, 2015
A biomimetic approach to hormone resistant prostate cancer cell isolation using inactivated Sendai virus (HVJ-E)Takaharu Okada, Koichiro Uto, Takao Aoyagi, et al.Science and Technology of Advanced Materials|April 17, 2025
Poly(ARTEMA), a novel artesunate-based polymer induces ferroptosis in breast cancer cellsNatsumi Ito, Ahmed Nabil, Koichiro Uto, et al.ACS Applied Materials & Interfaces|November 25, 2024
Double-Layered Electrospun Nanofiber Filter for the Simultaneous Removal of Urea and Ammonium from BloodMakoto Sasaki, László Szabó, Koichiro Uto, et al.International Journal of Molecular Sciences|December 11, 2022
Viscoelastic Liquid Matrix with Faster Bulk Relaxation Time Reinforces the Cell Cycle Arrest Induction of the Breast Cancer Cells via Oxidative StressMazaya Najmina, Mitsuhiro Ebara, Takahito Ohmura, et al.Pageof 14