Soft fluorescent organic nanodots as nanocarriers for porphyrins

Author:

Sasaki Isabelle1,Daniel Jonathan1,Marais Sébastien2,Verlhac Jean-Baptiste1,Vaultier Michel1,Blanchard-Desce Mireille1

Affiliation:

1. Univ. Bordeaux Institut des Sciences Moléculaires (CNRS UMR5255), Bâtiment A12, 351 Cours de la Libération, 33405 Talence CEDEX, France

2. CNRS, Univ. Bordeaux, Bordeaux Imaging Center, UMS 3420, 33000 Bordeaux, France

Abstract

Novel fluorescent organic nanoparticles made from citric acid and diethylenetriamine were used as biocompatible and highly water-soluble nanocarriers for hydrophobic tetraphenylporphyrin (TPP). The tetraphenylporphyrin units were covalently attached to the nanoparticles, generating conjugated nanoparticles which retain water solubility and preserve the photophysical properties of monomeric TPP. The conjugated nanoparticles show two distinct fluorescence features: blue emission from the nanoparticle when excited in the near-UV (360 nm) and characteristic far-red emission of the TPP when excited in the visible (Soret band or Q bands). The uptake of the conjugated nanoparticles in live human neuroblastoma cancer cells was evidenced using two-photon microscopy. These experiments demonstrate that the fluorescent organic nanoparticles do act as efficient nanocarriers, allowing cell internalization of hydrophobic porphyrins. These conjugated nanoparticles appear as promising nanotools for theranostic (based on the combination of imaging and monitoring of the nanoparticle fluorescence) and therapeutic (photodynamic therapy by selectively exciting the grafted porphyrin units) modalities.

Funder

the Laboratory of Excellence TRAIL

the French National Research Agency

Publisher

World Scientific Pub Co Pte Lt

Subject

General Chemistry

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