Photodynamic therapy of cancer: An update

Фотодинамическая терапия рака: современное состояние и перспективы
Johan Moan, Brian C. Wilson, Stephen M. Hahn, Michael R. Hamblin, Kristian Berg, Paweł Mróz, Sandra O. Gollnick, Patrizia Agostinis, Keith A. Cengel, Thomas H. Foster, Albert W. Girotti, Asta Juzeniene, David Kessel, Mladen Korbelik, Dominika Nowis, Jacques Piette, Jakub Gołąb
2011-05-26

cancer treatmentlocal inflammatory reactionphotodynamic therapyphotosensitizing agentstumor microvasculature
Photodynamic therapy (PDT) is a clinically approved, minimally invasive therapeutic procedure that can exert a selective cytotoxic activity toward malignant cells. The procedure involves administration of a photosensitizing agent followed by irradiation at a wavelength corresponding to an absorbance band of the sensitizer. In the presence of oxygen, a series of events lead to direct tumor cell death, damage to the microvasculature, and induction of a local inflammatory reaction. Clinical studies revealed that PDT can be curative, particularly in early stage tumors. It can prolong survival in patients with inoperable cancers and significantly improve quality of life. Minimal normal tissue toxicity, negligible systemic effects, greatly reduced long-term morbidity, lack of intrinsic or acquired resistance mechanisms, and excellent cosmetic as well as organ function-sparing effects of this treatment make it a valuable therapeutic option for combination treatments. With a number of recent technological improvements, PDT has the potential to become integrated into the mainstream of cancer treatment.
1
Clinical studies indicate that PDT can be curative for some early-stage tumors and prolong survival in patients with inoperable cancers.
2
PDT can substantially improve quality of life while causing minimal normal-tissue toxicity, negligible systemic effects, and reduced long-term morbidity.
3
PDT lacks intrinsic and acquired resistance mechanisms and preserves cosmetic outcomes and organ function, supporting its use in combination therapies.
4
PDT produces antitumor effects through direct tumor-cell death, microvascular damage, and induction of a local inflammatory response.
5
Photodynamic therapy is a clinically approved, minimally invasive treatment that selectively destroys malignant cells through photosensitizer activation by specific-wavelength irradiation in oxygen.
6
Recent technological advances may enable PDT to become integrated into mainstream cancer treatment.

Photodynamic therapy (PDT) applied to cancer treatment

the therapeutic mechanisms, clinical efficacy, safety, and treatment potential of photodynamic therapy, including tumor-cell killing, microvascular damage, inflammatory responses, survival benefits, and quality-of-life effects

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Publication Date
2011-05-26
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Authors
Johan Moan
Brian C. Wilson
Stephen M. Hahn
Michael R. Hamblin
Kristian Berg
Paweł Mróz
Sandra O. Gollnick
Patrizia Agostinis
Keith A. Cengel
Thomas H. Foster
Albert W. Girotti
Asta Juzeniene
David Kessel
Mladen Korbelik
Dominika Nowis
Jacques Piette
Jakub Gołąb
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