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Regulating interparticle proximity in plasmonic nanosphere aggregates to enhance photoacoustic response and photothermal stability.

Authors :
Kim M
Kubelick KP
Yu AM
VanderLaan D
Jhunjhunwala A
Nikolai RJ
Cadena M
Kim J
Emelianov SY
Source :
Advanced functional materials [Adv Funct Mater] 2024 Jun 12; Vol. 34 (24). Date of Electronic Publication: 2024 Feb 20.
Publication Year :
2024

Abstract

Designing plasmonic nanoparticles for biomedical photoacoustic (PA) imaging involves tailoring material properties at the nanometer scale. A key in developing plasmonic PA contrast nanoagents is to engineer their enhanced optical responses in the near-infrared wavelength range, as well as heat transfer properties and photostability. This study introduces anisotropic plasmonic nanosphere aggregates with close interparticle proximity as photostable and efficient contrast agent for PA imaging. Silver (Ag), among plasmonic metals, is particularly attractive due to its strongest optical response and highest heat conductivity. Our results demonstrate that close interparticle proximity in silver nanoaggregates (AgNAs), spatially confined within a polymer shell layer, leads to blackbody-like optical absorption, resulting in robust PA signals through efficient pulsed heat generation and transfer. Additionally, our AgNAs exhibit a high photodamage threshold highlighting their potential to outperform conventional plasmonic contrast agents for high-contrast PA imaging over multiple imaging sessions. Furthermore, we demonstrate the capability of the AgNAs for molecular PA cancer imaging in vivo by incorporating a tumor-targeting peptide moiety.<br />Competing Interests: Conflict of Interest The authors declare no conflict of interest.

Details

Language :
English
ISSN :
1616-301X
Volume :
34
Issue :
24
Database :
MEDLINE
Journal :
Advanced functional materials
Publication Type :
Academic Journal
Accession number :
39021614
Full Text :
https://doi.org/10.1002/adfm.202313963