Wang, Ting YiBruggeman, Kiara A.F.Sheean, Rebecca K.Turner, Bradley J.Nisbet, David R.Parish, Clare L.2026-01-012026-01-010021-9258PubMed:24700461ORCID:/0000-0002-1865-100X/work/162953051https://hdl.handle.net/1885/733800466Background: Tethering proteins onto bioengineered scaffolds enables longterm delivery, however protein stability, release kinetics, and functionality over time remains unknown. Results: Tethered proteins remain stable and functional for several months, capable of activating intracellular signaling pathways and influencing cell fate. Conclusion: Tethered proteins are stable and functional long-term. Significance: Such knowledge may have implications for promoting tissue repair.8enCharacterization of the stability and bio-functionality of tethered proteins on bioengineered scaffolds: Implications for stem cell biology and tissue repair201410.1074/jbc.M113.53738184901386353