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Research Article

Quenching-induced deactivation of photosensitizer by nanoencapsulation to improve phototherapy of cancer

, , , &
Pages 619-626 | Received 18 Feb 2009, Accepted 15 May 2009, Published online: 10 Jul 2009
 

Abstract

Photodynamic therapy has emerged as a promising alternative to current cancer treatment. However, conventional photosensitizers have several limitations due to their unsuitable pharmaceutical formulations and lack of selectivity. Our strategy was to exploit the advantages of nanoparticles and the quenching-induced deactivation of the model photosensitizer hypericin to produce “activatable” drug delivery systems. Efficient fluorescence and activity quenching were achieved by increasing the drug-loading rate of nanoparticles. In vitro assays confirmed the reversibility of hypericin deactivation, as the hypericin fluorescence and photodynamic activity were recovered upon cell internalization.

Acknowledgements

Declaration of interest: The authors report no conflicts of interest.

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