Issue 17, 2024, Issue in Progress

Cell-penetrating peptides noncovalently modified red phosphorescent nanoparticles for high-efficiency imaging

Abstract

The application of long-lived phosphorescence probes in time-resolved luminescence imaging is limited by their low quantum yield in aqueous solutions. However, sensitization of thermally activated delayed fluorescence (TADF) materials can compensate for this limitation while addressing the issue of insufficient proportion of their own long lifetime. In this study, we utilized the characteristics of phosphorescence and TADF materials simultaneously by doping the receptor iridium complex PMD-Ir into the donor TADF polymer PCzDP-20 through donor–receptor doping method, and successfully prepared highly efficient red phosphorescent nanoparticles. The quantum yield of the nanoparticles obtained by this method reaches up to 30%, and the luminescence lifetime can reach several thousand nanoseconds. Additionally, due to the low concentration doping of PMD-Ir, the risk of transition metal toxicity is greatly reduced. Furthermore, we used non-covalent modification with amphiphilic cell-penetrating peptides (CPPs) to increase the cell membrane permeability of the nanoparticles. The CPPs modified nanoparticles achieve in vivo confocal imaging of zebrafish and intracellular time-resolved imaging by its significantly improved bioimaging capabilities. The functional nanoparticles designing method fully utilizes the characteristics of PMD-Ir, PCzDP-20, and CPPs, solving the problems of low quantum yield and poor membrane permeability of Ir-complex nanoparticles. This will greatly promote the development of time-resolved luminescence imaging.

Graphical abstract: Cell-penetrating peptides noncovalently modified red phosphorescent nanoparticles for high-efficiency imaging

Supplementary files

Article information

Article type
Paper
Submitted
28 Feb 2024
Accepted
25 Mar 2024
First published
15 Apr 2024
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2024,14, 11891-11899

Cell-penetrating peptides noncovalently modified red phosphorescent nanoparticles for high-efficiency imaging

Z. Luo, Z. Zhou, Y. Pan, Z. Zhu, H. Yuan, Y. Li, S. Feng, Y. Hong and L. Xu, RSC Adv., 2024, 14, 11891 DOI: 10.1039/D4RA01531B

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