Porphyrin‐related photosensitizers for cancer imaging and therapeutic applications
- 27 April 2005
- journal article
- review article
- Published by Wiley in Journal of Microscopy
- Vol. 218 (2), 133-147
- https://doi.org/10.1111/j.1365-2818.2005.01471.x
Abstract
A photosensitizer is defined as a chemical entity, which upon absorption of light induces a chemical or physical alteration of another chemical entity. Some photosensitizers are utilized therapeutically such as in photodynamic therapy (PDT) and for diagnosis of cancer (fluorescence diagnosis, FD). PDT is approved for several cancer indications and FD has recently been approved for diagnosis of bladder cancer. The photosensitizers used are in most cases based on the porphyrin structure. These photosensitizers generally accumulate in cancer tissues to a higher extent than in the surrounding tissues and their fluorescing properties may be utilized for cancer detection. The photosensitizers may be chemically synthesized or induced endogenously by an intermediate in heme synthesis, 5-aminolevulinic acid (5-ALA) or 5-ALA esters. The therapeutic effect is based on the formation of reactive oxygen species (ROS) upon activation of the photosensitizer by light. Singlet oxygen is assumed to be the most important ROS for the therapeutic outcome. The fluorescing properties of the photosensitizers can be used to evaluate their intracellular localization and treatment effects. Some photosensitizers localize intracellularly in endocytic vesicles and upon light exposure induce a release of the contents of these vesicles, including externally added macromolecules, into the cytosol. This is the basis for a novel method for macromolecule activation, named photochemical internalization (PCI). PCI has been shown to potentiate the biological activity of a large variety of macromolecules and other molecules that do not readily penetrate the plasma membrane, including type I ribosome-inactivating proteins, immunotoxins, gene-encoding plasmids, adenovirus, peptide-nucleic acids and the chemotherapeutic drug bleomycin. The background and present status of PDT, FD and PCI are reviewed.Keywords
This publication has 78 references indexed in Scilit:
- PCI-enhanced adenoviral transduction employs the known uptake mechanism of adenoviral particlesCancer Gene Therapy, 2005
- Photochemically Enhanced Gene Delivery of EGF Receptor-targeted DNA PolyplexesJournal of Drug Targeting, 2004
- Photochemically enhanced gene transfection increases the cytotoxicity of the herpes simplex virus thymidine kinase gene combined with ganciclovirCancer Gene Therapy, 2004
- Photodynamic therapy for cancerNature Reviews Cancer, 2003
- Laser and Non-laser Light Sources for Photodynamic TherapyLasers in Medical Science, 2002
- Photodynamic therapeutics: basic principles and clinical applicationsDrug Discovery Today, 1999
- Photodynamic Therapy: Tumor Targeting with Adenoviral ProteinsPhotochemistry and Photobiology, 1999
- Author indexJournal of Photochemistry and Photobiology A: Chemistry, 1990
- THE ROLE OF SINGLET OXYGEN IN THE PHOTOHEMOLYSIS OF RED BLOOD CELLS SENSITIZED BY PHTHALOCYANINE SULFONATESPhotochemistry and Photobiology, 1987
- Porphyrin-lipoprotein association as a factor in porphyrin localizationCancer Letters, 1986