Nano Letters · 2023 · 14 citations · 46 references
Nature regulates cellular interactions through the cell-surface molecules and plasma membranes. Despite advances in cell-surface engineering with diverse ligands and reactive groups, modulating cell-cell interactions through scaffolds of the cell-binding cues remains a challenging endeavor. Here, we assembled peptide nanofibrils on live cell surfaces to present the ligands that bind to the target cells. Surprisingly, with the same ligands, reducing the thermal stability of the nanofibrils promoted cellular interactions. Characterizations of the system revealed a thermally induced fibril disassembly and reassembly pathway that facilitated the complexation of the fibrils with the cells. Using the nanofibrils of varied stabilities, the cell-cell interaction was promoted to different extents with free-to-bound cell conversion ratios achieved at low (31%), medium (54%), and high (93%) levels. This study expands the toolbox to generate desired cell behaviors for applications in many areas and highlights the merits of thermally less stable nanoassemblies in designing functional materials.
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Self-Assembling Cages from Coiled-Coil Peptide Modules
Jordan M. Fletcher, Robert L. Harniman, Frederick R. H. Barnes et al. · Science · 2013 · 497 citations
Engineering, Peptide Engineering, Molecular Self-assembly +16
Pericellular Hydrogel/Nanonets Inhibit Cancer Cells
Yi Kuang, Junfeng Shi, Jie Li et al. · Angewandte Chemie International Edition · 2014 · 321 citations · Full text