光敏剂
光动力疗法
体内
脂质体
胶束
化学
药物输送
氯
体外
药理学
药品
毒品携带者
生物物理学
生物化学
医学
生物
光化学
有机化学
生物技术
水溶液
作者
María García-Díaz,Masayoshi Kawakubo,Paweł Mróz,M. Lluïsa Sagristá,Margarita Mora,Santi Nonell,Michael R. Hamblin
标识
DOI:10.1016/j.jconrel.2012.07.025
摘要
The effects of the drug delivery system on the PDT activity, localization, and tumor accumulation of the novel photosensitizer temocene (the porphycene analogue of temoporfin or m-tetrahydroxyphenyl chlorin) were investigated against the P815 tumor, both in vitro and in DBA/2 tumor bearing mice. Temocene was administered either free (dissolved in PEG(400)/EtOH mixture), or encapsulated in Cremophor EL micelles or in DPPC/DMPG liposomes, chosen as model delivery vehicles. The maximum cell accumulation and photodynamic activity in vitro was achieved with the free photosensitizer, while temocene in Cremophor micelles hardly entered the cells. Notwithstanding, the micellar formulation showed the best in vivo response when used in a vascular regimen (short drug light interval), whereas liposomes were found to be an efficient drug delivery system for a tumor cell targeting strategy (long drug-light interval). PEG/EtOH formulation was discarded for further in vivo experiments as it provoked lethal toxic effects caused by photosensitizer aggregation. These results demonstrate that drug delivery systems modulate the vascular and cellular outcomes of photodynamic treatments with temocene.
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