Gold-based nanomaterials have attracted
extensive interest for potential application in photothermal therapy
(PTT) owing to their distinctive properties including high photothermal
transduction, biocompatibility, and low cytotoxicity. Herein, assembled
gold nanoparticle architecture-based photothermal conversion agents
were synthesized by using polysaccharides (alginate dialdehyde, ADA)
as both the cross-linker to induce self-assembly of diphenylalanine
(FF) and the reducer for in situ reduction of Au3+ ions
into Au nanoparticles (Au NPs). The extinction spectrum of the obtained
self-assembled ADA–FF/Au nanospheres was finely modulated into
a near-infrared region by controlling the growth of Au NPs inside
the assemblies. The strong plasmonic coupling effect of the assembled
Au NPs also leads to high photothermal conversion (η = 40%)
of the ADA–FF/Au nanospheres, hence presenting good performance
in PTT and photoacoustic imaging. This synthesis technique is promising
to construct nanomaterials with desired functions for potential biomedical
application by self-assembly of various nanocrystals in situ.
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