卟啉衍生物CF3对培养肿瘤细胞的光杀伤作用。

Anti-cancer drug design Pub Date : 2001-12-01
A Villanueva, E N Durantini, J C Stockert, S Rello, R Vidania, M Cañete, A Juarranz, R Arranz, V Rivarola
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引用次数: 0

摘要

我们分析了新型卟啉5-(4- n -(N-2′,6′-二硝基-4′-三氟甲基苯基)氨基苯基)-10,15,20-三(2,4,6-三甲氧基苯基)卟啉(CF3)在HeLa细胞上的光敏性能。CF3的荧光量子产率和单重态氧量子产率分别为phiF = 0.032和phidelta = 0.25。将5 × 10(-6) M CF3加入脂质体囊泡中进行细胞处理。紫蓝色激发光下,CF3的红色荧光主要在溶酶体样颗粒中检测到。高浓度(5 × 10(-6) M)和长孵育时间(18 h)未观察到暗细胞毒性。用CF3处理细胞18 h,暴露于光(360 < λ < 460 nm;8mw /cm2)作用7 min, 8 h后显示大量凋亡细胞(75.8%)和分离细胞(62%),导致细胞致死率为85% (LD85)。细胞凋亡通过染色质断裂和DNA阶梯凝胶电泳鉴定。辐照15 min (LD96)后发现坏死细胞,细胞表面出现先小后大的气泡,核凝聚均匀。CF3孵育3小时,辐照7分钟(LD38), 18小时后有丝分裂停止(有丝分裂指数:25.1%)。中期阻断48小时后,培养中出现大量凋亡细胞。考虑到这些结果,CF3可能是一种有价值的光敏剂,用于癌症的光动力治疗。
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Photokilling of cultured tumour cells by the porphyrin derivative CF3.

We have analysed the photosensitizing properties of the new porphyrin 5-(4-N-(N-2',6'-dinitro-4'-trifluoromethylphenyl)aminophenyl)-10,15,20-tris(2,4,6-trimethoxyphenyl) porphyrin (CF3) on HeLa cells. The fluorescence and singlet oxygen quantum yield for CF3 were, respectively, phiF = 0.032 and phidelta = 0.25. Cell treatments were done with 5 x 10(-6) M CF3 incorporated into liposome vesicles. Under violet-blue exciting light, the red fluorescence of CF3 was mainly detected in lysosome-like granules. No dark cytotoxicity was observed using high concentration (5 x 10(-6) M) and long incubation time (18 h). Cell cultures treated for 18 h with CF3 and exposed to light (360 < lambda < 460 nm; 8 mW/cm2) for 7 min revealed a great amount of apoptotic (75.8%) and detached cells (62%) 8 h later, leading to a cell lethality of 85% (LD85). Apoptosis was identified by chromatin fragmentation and DNA ladder in gel electrophoresis. Necrotic cells were found using 15 min irradiation (LD96) and showed first small and then giant bubbles at the cell surface, with homogeneous nuclear condensation. Incubation with CF3 for 3 h followed by 7 min irradiation (LD38) produced a mitotic arrest 18 h later (mitotic index: 25.1%). Forty-eight hours after this metaphase blockage, cultures showed a great number of apoptotic cells. Taking into account these results, CF3 could be a valuable photosensitizer for the photodynamic therapy of cancer.

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