Please use this identifier to cite or link to this item: http://dx.doi.org/10.25673/101658
Title: Tuning the internal compartmentation of single-chain nanoparticles as fluorescent contrast agents
Author(s): Thümmler, Justus F.
Kampe, Andreas HelmutLook up in the Integrated Authority File of the German National Library
Krüger, Jana
Hinderberger, DariushLook up in the Integrated Authority File of the German National Library
Schmitt, Franz-JosefLook up in the Integrated Authority File of the German National Library
Tang, Guo
Golmohamadi, Farzin Ghane
Laufer, Jan
Binder, Wolfgang H.Look up in the Integrated Authority File of the German National Library
Issue Date: 2023
Type: Article
Language: English
Abstract: Controlling the internal structures of single-chain nanoparticles (SCNPs) is an important factor for their targeted chemical design and synthesis, especially in view of nanosized compartments presenting different local environments as a main feature to control functionality. We here design SCNPs bearing near-infrared fluorescent dyes embedded in hydrophobic compartments for use as contrast agents in pump–probe photoacoustic (PA) imaging, displaying improved properties by the location of the dye in the hydrophobic particle core. Compartment formation is controlled via single-chain collapse and subsequent crosslinking of an amphiphilic polymer using external crosslinkers in reaction media of adjustable polarity. Different SCNPs with hydrodynamic diameters of 6-12 nm bearing adjustable label densities are synthesized. It is found that the specific conditions for single-chain collapse have a major impact on the formation of the desired core–shell structure, in turn adjusting the internal nanocompartments together with the formation of excitonic dye couples, which in turn increase their fluorescence lifetime and PA signal generation. SCNPs with the dye molecules accumulate at the core also show a nonlinear PA response as a function of pulse energy—a property that can be exploited as a contrast mechanism in molecular PA tomography.
URI: https://opendata.uni-halle.de//handle/1981185920/103605
http://dx.doi.org/10.25673/101658
Open Access: Open access publication
License: (CC BY-NC-ND 4.0) Creative Commons Attribution NonCommercial NoDerivatives 4.0(CC BY-NC-ND 4.0) Creative Commons Attribution NonCommercial NoDerivatives 4.0
Journal Title: Macromolecular rapid communications
Publisher: Wiley-VCH
Publisher Place: Weinheim
Volume: 44
Issue: 2
Original Publication: 10.1002/marc.202200618
Page Start: 1
Page End: 10
Appears in Collections:Open Access Publikationen der MLU