We report a straightforward aqueous synthesis of black gold nanoassemblies based on supramolecular guanosine quartet (G4) assembly and a dextran co-matrix, in which the functional photothermal component is an interconnected Au(0) plasmonic network. Dextran acts as a multifunctional polymeric co-matrix that helps organize the guanosine moieties and subsequently influences the nucleation and growth environment, particle connectivity, and colloidal stability. In this approach, Au 3+ /Au + ions play a dual role: beyond serving as metal precursors, they are proposed to stabilize and organize guanosine quartets into an extended Au + -templated G4 supramolecular network, which subsequently acts as a template for gold nucleation, reduction, and assembly into strongly coupled plasmonic architectures. The resulting Au(0) nanoassemblies exhibit intense, nearly black absorption spanning the visible to the NIR-II window (>1064 nm). The optimized dextran-based nanoassemblies show long-term colloidal stability, retain broadband absorption, and generate strong photothermal heating under 1064 nm irradiation, with the optimized samples reaching ~55 °C at 1 W/cm 2 without loss of dispersion stability, whereas the dextran-free analogues destabilize under irradiation. In vivo experiments in a mouse air-pouch model showed that macrophages that had internalized the dextran-stabilized gold nanoassemblies were ablated upon NIR irradiation, while the surrounding tissue remained preserved viable, indicating localized photothermal cytotoxicity with minimal collateral damage.
Ursu et al. (Wed,) studied this question.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: