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Growth Factors (Chur, Switzerland)|December 13, 2005
Combined effects of TGFbeta1 and BMP2 in serum-free chondrogenic differentiation of mesenchymal stem cells induced hyaline-like cartilage formationWei Seong Toh, Hua Liu, Boon Chin Heng, et al.Burns & Trauma|July 31, 2025
Multi-omics analysis of small extracellular vesicles in osteoarthritis: bridging the gap between molecular insights and clinical applicationsTianqi Wang, Chiew Yong Ng, Bryan Zheng Jie Ng, et al.Journal of Cellular and Molecular Medicine|May 12, 2009
Differentiation and enrichment of expandable chondrogenic cells from human embryonic stem cells in vitroWei Seong Toh, Xi-Min Guo, Andre B Choo, et al.Cartilage|March 10, 2016
Collagen Type IV and Laminin Expressions during Cartilage Repair and in Late Clinically Failed Repair Tissues from Human SubjectsCasper Bindzus Foldager, Wei Seong Toh, Bjørn Borsøe Christensen, et al.Tissue Engineering. Part C, Methods|November 17, 2009
Autologous feeder cells from embryoid body outgrowth support the long-term growth of human embryonic stem cells more effectively than those from direct differentiationXin Fu, Wei Seong Toh, Hua Liu, et al.Stem Cells International|July 1, 2015
Modulation of Dental Pulp Stem Cell Odontogenesis in a Tunable PEG-Fibrinogen Hydrogel SystemQiqi Lu, Mirali Pandya, Abdul Jalil Rufaihah, et al.Small Science|April 11, 2025
Macrophage Polarization as a Facile Strategy to Enhance Efficacy of Macrophage Membrane-Coated Nanoparticles in OsteoarthritisKristeen Ye Wen Teo, Cansu Sevencan, Yi Ann Cheow, et al.Biomaterials|December 17, 2013
Modulation of chondrocyte functions and stiffness-dependent cartilage repair using an injectable enzymatically crosslinked hydrogel with tunable mechanical propertiesLi-Shan Wang, Chan Du, Wei Seong Toh, et al.Biotechnology Journal|December 15, 2015
Potential applications of keratinocytes derived from human embryonic stem cellsMohammad M Movahednia, Fahad K Kidwai, Doorgesh S Jokhun, et al.International Journal of Biological Macromolecules|December 25, 2025
MiR-486-5p-modified DPSC-derived sEVs encapsulated in GelMA hydrogel promote wound healing by enhancing angiogenesis via Smurf2/TGF-β1 pathwaysSiyu Wang, Ziyu Zhou, Kunyu Lv, et al.Pageof 9