Synergistic Interaction of Photodynamic Treatment with the Sensitizer Aluminum Phthalocyanine and Hyperthermia on Loss of Clonogenicity of CHO Cells
- 1 September 1996
- journal article
- Published by Wiley in Photochemistry and Photobiology
- Vol. 64 (3) , 586-593
- https://doi.org/10.1111/j.1751-1097.1996.tb03109.x
Abstract
Abstract— When CHO cells were exposed to hyperthermia and subsequently to photodynamic treatment, the combined effects were additive but in the reverse sequence the interaction was synergistic. The synergistic interaction comprised two quite different components: (1) photodynam‐ically induced sensitization of cellular proteins and/or supramolecular structures for thermal inactivation and (2) a photodynamically induced inhibition of the cellular repair system for sublethal thermal damage. The first component of the synergistic interaction was reflected by a change of the Arrhenius parameters of thermal cell killing. A lowering of the activation energy of this process was responsible for the synergistic interactions, whereas a concomitant decrease of the frequency factor, opposing this effect, actually caused a much lower degree of synergism at higher temperatures. This component of the synergistic interaction did not respond to the insertion of an intermediate incubation period between the two treatments. The second component of the synergistic interaction, viz. the interference with the ability of cells to survive sublethal thermal damage, was reversible, as an intermediate incubation between photodynamic treatment and hyperthermia resulted in its repair. The photodynamically induced inhibition of the ability of cells to survive sublethal thermal damage was not related to ATP or glutathione depletion, inhibition of de novo protein synthesis or impairment of degradation of damaged protein molecules. Restoration of the repair system for sublethal damage depended on a metabolic process and required free intracellular Ca2+, suggesting that a cell signaling pathway may be involved. Thus, in a practical sense the magnitude of the synergistic interaction between photodynamic treatment and hyperthermia depends on the length of the interval between the two treatments and on the temperature and duration of the subsequent thermal treatment. This may have significant consequences for the development of clinical protocols.Keywords
This publication has 34 references indexed in Scilit:
- The Effect of Hypothermia and Hyperthermia on Photodynamic Therapy of Normal BrainNeurosurgery, 1995
- HOW DOES PHOTODYNAMIC THERAPY WORK?Photochemistry and Photobiology, 1992
- The effect of hyperthermia on murine leukaemia cells in combination with photodynamic therapyInternational Journal of Hyperthermia, 1988
- Fura-2 measurement of cytosolic free Ca2+ in monolayers and suspensions of various types of animal cells.The Journal of cell biology, 1987
- EARLY BIOCHEMICAL RESPONSES TO PHOTODYNAMIC THERAPY MONITORED BY NMR SPECTROSCOPYPhotochemistry and Photobiology, 1987
- PHOTODYNAMIC THERAPY‐INDUCED HYPOXIA IN RAT TUMORS and NORMAL TISSUESPhotochemistry and Photobiology, 1987
- TIME and SEQUENCE DEPENDENT INFLUENCE OF IN VITRO PHOTODYNAMIC THERAPY (PDT) SURVIVAL BY HYPERTHERMIAPhotochemistry and Photobiology, 1985
- On the Importance of the Level of Glutathione and the Activity of the Pentose Phosphate Pathway in Heat Sensitivity and ThermotoleranceInternational Journal of Radiation Biology, 1985