Advanced Healthcare Materials · 2016 · 40 citations · 48 references
EngineeringBiomimetic MaterialsSmart PolymerResponsive PolymersBiofabricationBiomedical EngineeringSupramolecular HydrogelProtein NanoparticlesHydrogelsNew Bottom-up StrategyBioimagingMatrix BiologyHybrid MaterialsMolecular ImagingBiophysicsAromatic Peptide AmphiphileNovel Imaging MethodFluorescent Microfibrous NetworkNovel Supramolecular HydrogelatorBiopolymersBiophotonics3D BioprintingFunctional Supramolecular PolymersSupramolecular PolymerBiopolymer GelBiofunctional MaterialBiomedical DiagnosticsBiomedical ImagingMedicineCell Imaging
A new bottom-up strategy based on aromatic peptide amphiphile is developed for a high-contrast visualization of 3D live cell-material imaging-something that has been difficult to achieve previously because of the problems associated with the diffraction of light by the nanosized peptide materials and the aggregation-caused quenching of aggregated π-conjugated fluorophores in the nanostructures. This study reports an example of a novel supramolecular hydrogelator, naphthaleneimide-phenylalanine (NI-Phe), which forms a self-supporting hydrogel displaying a unique microfibrous network and promising aggregation-induced emission characteristics at pH 7.4. The storage modulus of the NI-Phe gel supports the mass of a cell for 3D cell culturing. This work illustrates a new dopant-free supramolecular approach, complementary to well-established doping procedures that should facilitate the development of live cell imaging in 3D scaffolding materials.
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Photophysics of aromatic molecules
Marl Sharnoff · Journal of Luminescence · 1971 · 4.5K citations
Photochemistry, Natural Sciences, Mechanistic Photochemistry +5
Enhanced Emission and Its Switching in Fluorescent Organic Nanoparticles
Byeong‐Kwan An, Soon‐Ki Kwon, Sang-Don Jung et al. · Journal of the American Chemical Society · 2002 · 1.9K citations