Issue 6, 2024

Exploring multi-stimuli-responsive Pt(ii) complexes: supramolecular self-assembly, lysosome-specific targeted photodynamic therapy and photodegradation of organic pollutants

Abstract

Developing novel luminescent materials with multi-stimuli-responsiveness and multi-functional properties is vital. Herein, we designed and synthesized aggregation-induced emission (AIE)-based platinum(II) compounds, Pt-Cl and Pt-PF, with multi-stimuli responsiveness. Pt-PF exhibited excellent AIE properties and featured high sensitivity to changes in solvent conditions. Moreover, Pt-PF self-assembled in water through the aggregation of Pt–Pt and π–π stacking interactions. Owing to its remarkable AIE properties, Pt-PF served as a unique imaging probe for lysosomes, demonstrating excellent photostability. Notably, Pt-Cl and Pt-PF exhibited high reactive oxygen species generation capabilities and excellent biocompatibility, making them superior photosensitizers for photodynamic therapy treatment against cancer cells by targeting lysosomes. Additionally, the Pt-Cl photocatalyst efficiently photodegraded organic pollutants with a high efficiency of 98.7% under white light irradiation for only 60 min. These results provide valuable guidance for designing multi-functional molecules and developing stimuli-responsive materials.

Graphical abstract: Exploring multi-stimuli-responsive Pt(ii) complexes: supramolecular self-assembly, lysosome-specific targeted photodynamic therapy and photodegradation of organic pollutants

Supplementary files

Article information

Article type
Research Article
Submitted
14 Dec 2023
Accepted
30 Jan 2024
First published
31 Jan 2024

Inorg. Chem. Front., 2024,11, 1693-1702

Exploring multi-stimuli-responsive Pt(II) complexes: supramolecular self-assembly, lysosome-specific targeted photodynamic therapy and photodegradation of organic pollutants

H. Ding, X. Deng, X. Liu, W. Shang, X. Du, S. Wang, X. Liu, X. Chen, H. Liu and H. Su, Inorg. Chem. Front., 2024, 11, 1693 DOI: 10.1039/D3QI02584E

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