Ultrasoft microgels displaying emergent platelet-like behaviours
Ashley C. Brown(North Carolina State University), Thomas H. Barker(University of Virginia), L. Andrew Lyon(Chapman University), Riley T. Hannan(Georgia Institute of Technology), Sarah E. Stabenfeldt(Arizona State University), Kabir S. Dhada(Georgia Institute of Technology), Wilbur A. Lam(Georgia Institute of Technology), Nina A. Guzzetta(Emory University), Byungwook Ahn(Georgia Institute of Technology), Victoria L. Stefanelli(Georgia Institute of Technology), Emily S. Herman(Georgia Institute of Technology), Alexander Alexeev(Georgia Institute of Technology)
Cited by 219
Related Papers
Matrix Stiffness–Induced Myofibroblast Differentiation Is Mediated by Intrinsic Mechanotransduction
|American Journal of Respiratory Cell and Molecular Biology|2012|527
Fibrin-based biomaterials: Modulation of macroscopic properties through rational design at the molecular level
|Acta Biomaterialia|2013|273
Targeted repair of heart injury by stem cells fused with platelet nanovesicles
|Nature Biomedical Engineering|2018|239
Platelet mechanosensing of substrate stiffness during clot formation mediates adhesion, spreading, and activation
|Proceedings of the National Academy of Sciences|2014|212