- 激光医学临床实践:光动力疗法与肿瘤分册
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- 2025-03-15 08:25:28
参考文献
[1] MACDONALD I J,DOUGHERTY T J. Basic principles of photodynamic therapy. J Porphyrins Phthalocyanines,2001,5(2):105-129.
[2] CASTANO A P,DEMIDOVA T N,HAMBLIN M R. Mechanisms in photodynamic therapy:part one-photosensitizers,photochemistry and cellular localization. Photodiagnosis Photodyn Ther,2004,1(4):279-293.
[3] CASTANO A P,DEMIDOVA T N,HAMBLIN M R. Mechanisms in photodynamic therapy:part two-cellular signaling,cell metabolism and modes of cell death. Photodiagnosis Photodyn Ther,2005,2(1):1-23.
[4] CASTANO A P,DEMIDOVA T N,HAMBLIN M R. Mechanisms in photodynamic therapy:part three-photosensitizer pharmacokinetics,biodistribution,tumor localization and modes of tumor destruction. Photodiagnosis Photodyn Ther,2005,2(2):91-106.
[5] DETTY M R,GIBSON S L,WAGNER S J. Current clinical and preclinical photosensitizers for use in photodynamic therapy. J Med Chem,2004,47(16):3897-3915.
[6] KOZHEVNIKOV V N,IGOSHEV V F. Use of low-energy helium-neon lasers under experimental and clinical conditions. Akush Ginekol (Mosk),1982(10):11-14.
[7] SALTER C L,STEVENSON R M,FARRER I,et al. An entangled-light-emitting diode.Nature,2010,465(7298):594-597.
[8] ZHANG J,JIANG C,FIGUEIRÓ LONGO J P,et al. An updated overview on the development of new photosensitizers for anticancer photodynamic therapy. Acta Pharm Sin B,2018,8(2):137-146.
[9] ZIMCÍK P,MILETÍN M. Photodynamic therapy as a new prospective method for cancer treatment--Ⅱ. Overview of photosensitizers. Ceska Slov Farm,2004,53(6):271-279.
[10] LATUNDE-DADA G O,SIMPSON R J,MCKIE A T. Recent advances in mammalian haem transport. Trends Biochem Sci,2006,31(3):182-188.
[11] TSIFTSOGLOU A S,TSAMADOU A I,PAPADOPOULOU L C. Heme as key regulator of major mammalian cellular functions:molecular,cellular,and pharmacological aspects.Pharmacol Ther,2006,111(2):327-345.
[12] LEE M H,KIM E J,LEE H,et al. Liposomal Texaphyrin theranostics for metastatic liver cancer. J Am Chem Soc,2016,138(50):16380-16387.
[13] SESHADRI M,BELLNIER D A. The vascular disrupting agent 5,6-dimethylxanthenone-4-acetic acid improves the antitumor efficacy and shortens treatment time associated with Photochlor-sensitized photodynamic therapy in vivo. Photochem Photobiol,2009,85(1):50-56.
[14] BELLNIER D A,GRECO W R,LOEWEN G M,et al. Clinical pharmacokinetics of the PDT photosensitizers porfimer sodium (Photofrin),2-[1-hexyloxyethyl]-2-devinyl pyropheophorbide-a (Photochlor) and 5-ALA-induced protoporphyrin Ⅸ. Lasers Surg Med,2006,38(5):439-444.
[15]张浩,许德余. 肿瘤光化学诊治药物的研究——Ⅵ半合成血卟啉衍生物的制备及肿瘤光生物活性研究. 中国医药工业杂志,1989,2(12):60-63.
[16]许德余,陈文晖,张浩,等.光动力治癌新药血卟啉单甲醚(HMME)的研究.中国激光医学杂志,1993,2(1):3-7.
[17]陈文晖,吴激,许德余.正交试验设计优选血卟啉单甲醚制备反应条件.第二军医大学学报,1996,17(40):393-395.
[18]顾瑛,李峻亨,许德余,等.新型光敏剂——血卟啉单甲醚临床应用研究的初步报道.中国激光医学杂志,1993,2(4):235-236.
[19] LEACH M W,HIGGINS R J,AUTRY S A,et al. In vitro photodynamic effects of lysyl chlorin p6:cell survival,localization and ultrastructural changes. Photochem Photobiol,1993,58(5):653-660.
[20] OKADA C Y,RECHSTEINER M. Introduction of macromolecules into cultured mammalian cells by osmotic lysis of pinocytic vesicles. Cell,1982,29(1):33-41.
[21] WILSON P D,FIRESTONE R A,LENARD J. The role of lysosomal enzymes in killing of mammalian cells by the lysosomotropic detergent N-dodecylimidazole. J Cell Biol,1987,104(5):1223-1229.