Perfluoroalkylated amphiphilic porphyrin nanomicelles for improved photodynamic therapy: anti-tumour efficacy through stability enhancement and O2 enrichment
Abstract
Amphiphilic porphyrin nanomicelles have been established as new single-molecule photodynamic agents (PDAs) for cancer treatment. Further improvement of the photodynamic performance will increase the potential of this class of PDAs for practical application. Here, we prepare four new porphyrin compounds F-TSCnP (n = 5–8) that bear a n-C5F11, n-C6F13, n-C7F15, and n-C8F17 chain, respectively. We demonstrate that, compared with the analogues that bear a shorter perfluoroalkyl or n-C8H17 chain, n-C8F17-bearing compound F-TSC8P can self-assemble into nanomicelles that possess increased stability and uniformity as well as improved intracellular self-delivering capacity. We further illustrate that nanomicelles formed by F-TSC8P form a unique fluorocarbon microphase, which can enrich and deliver O2 to achieve remarkably enhanced photosensitizing activity for 1O2 generation. In vivo assay using a mouse model reveals that, compared with the fluorine-free counterpart, F-TSC8P, which has a therapeutic index of 10, exhibits a 150% increase in photodynamic activity for tumour growth inhibition.
- This article is part of the themed collection: New Developments in Photofunctional Materials and Transformations

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