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ACTION SPECTRUM (620–640 nm) FOR HEMATOPORPHYRIN DERIVATIVE INDUCED CELL KILLING
Authors:CHARLES J GOMER † ‡ §  DANIEL R DOIRON †  NATALIE RUCKER  NICHOLAS J RAZUM  STANLEY W FOUNTAIN
Institution:*Clayton Center for Ocular Oncology Childrens Hospital of Los Angeles;†Departments of Pediatrics Division of Hematology-Oncology) and Ophthalmology USC School of Medicine, Los Angeles, CA 90027, USA;‡USC School of Medicine, Los Angeles, CA 90027, USA
Abstract:Abstract— Monochromatic red light generated by a tunable dye laser is currently being utilized for the treatment of solid tumors with hematoporphyrin derivative (HpD) photoradiation therapy (PRT). Experiments were performed using mammalian cells to determine the most efficient wavelength of red light (620 to 640 nm range) for HpD induced cellular photoinactivation. Decrease in the clonogenic potential of Chinese hamster ovary (CHO) cells was examined following both short (I h) and extended (12 h) HpD incubation times. Maximal photosensitization was observed with wavelengths ranging from 630 to 632.5 nm and the action spectra for cell killing matched the absorption spectra for HpD bound to cells. Similar observations were obtained following both short and extended HpD-cell incubation times. The potential relevance of these results as they relate to clinical HpD PRT are discussed.
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