Supramolecular Photonic Therapeutic Agents
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- 4 November 2005
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 127 (47) , 16360-16361
- https://doi.org/10.1021/ja0553497
Abstract
A new approach to achieving selectivity for photodynamic therapy based upon the reversible off/on switching of the key therapeutic property (singlet oxygen generation) of a supramolecular photonic therapeutic agent (SPTA) in response to an external stimulus in the surrounding microenvironment is described. A series of SPTA analogues with pH responsive receptors of varying pKa are presented, in which the generation of singlet oxygen is shown to be dependent upon a proton source. For example, systems have been constructed such that the excited state energy of the photosensitizer can be decayed by a rapid photoinduced electron transfer (PET) mechanism, resulting in virtually no singlet oxygen being generated, but when the amine receptor is protonated the PET mechanism does not operate and singlet oxygen is produced. In vitro efficacy demonstrated that the SPTA derivatives can be activated within cells and one analogue is measured to have an EC50 value of 5.8 nM when assayed in the MRC5 cell line.Keywords
This publication has 12 references indexed in Scilit:
- A potent nonporphyrin class of photodynamic therapeutic agent: cellular localisation, cytotoxic potential and influence of hypoxiaBritish Journal of Cancer, 2005
- In Vitro Demonstration of the Heavy-Atom Effect for Photodynamic TherapyJournal of the American Chemical Society, 2004
- Liposomes for photodynamic therapyAdvanced Drug Delivery Reviews, 2004
- Photosensitizer-antibody conjugates for detection and therapy of cancerAdvanced Drug Delivery Reviews, 2003
- Monitoring photodynamic therapy of solid tumors online by BOLD-contrast MRINature Medicine, 2003
- Photodynamic therapy for cancerNature Reviews Cancer, 2003
- Synthesis of BF2chelates of tetraarylazadipyrromethenes and evidence for their photodynamic therapeutic behaviourChemical Communications, 2002
- Charge-Transfer Quenching of Singlet Oxygen O2(1Δg) by Amines and Aromatic HydrocarbonsThe Journal of Physical Chemistry A, 1998
- Phosphorescent PET (photoinduced electron transfer) sensors: prototypical examples for proton monitoring and a ‘message in a bottle’ enhancement strategy with cyclodextrinsJournal of the Chemical Society, Chemical Communications, 1991
- Lipoid pH indicators as probes of electrical potential and polarity in micellesThe Journal of Physical Chemistry, 1977