Juzeniene Asta, Peng Qian, Moan Johan
Department of Radiation Biology, Institute for Cancer Research, Rikshospitalet-Radiumhospitalet Medical Center, The Norwegian Radium Hospital, Montebello, N-0310, Oslo, Norway.
Photochem Photobiol Sci. 2007 Dec;6(12):1234-45. doi: 10.1039/b705461k. Epub 2007 Aug 29.
Many reviews on PDT have been published. This field is now so large, and embraces so many sub-specialties, from laser technology and optical penetration through diffusing media to a number of medical fields including dermatology, gastroenterology, ophthalmology, blood sterilization and treatment of microbial-viral diseases, that it is impossible to cover all aspects in a single review. Here, we will concentrate on a few basic aspects, all important for the route of development leading PDT to its present state: early work on hematoporphyrin and hematoporphyrin derivative, second and third generation photosensitizers, 5-aminolevulinic acid and its derivatives, oxygen and singlet oxygen, PDT effects on cell organelles, mutagenic potential, the basis for tumour selectivity, cell cooperativity, photochemical internalization, light penetration into tissue and the significance of oxygen depletion, photobleaching of photosensitizers, optimal light sources, effects on the immune system, and, finally, future trends.
关于光动力疗法(PDT)已经发表了许多综述。这个领域现在规模如此庞大,涵盖了如此多的子专业,从激光技术、光在漫射介质中的穿透到包括皮肤科、胃肠病学、眼科、血液灭菌以及微生物 - 病毒疾病治疗在内的多个医学领域,以至于不可能在一篇综述中涵盖所有方面。在此,我们将专注于几个基本方面,这些对于光动力疗法发展到当前状态的发展路径都很重要:血卟啉和血卟啉衍生物的早期研究、第二代和第三代光敏剂、5 - 氨基酮戊酸及其衍生物、氧气和单线态氧、光动力疗法对细胞器的影响、诱变潜力、肿瘤选择性的基础、细胞协同作用、光化学内化、光在组织中的穿透以及氧耗竭的意义、光敏剂的光漂白、最佳光源、对免疫系统的影响,以及最后,未来趋势。