Key Laboratory of Ministry of Education for Medicinal Resources and Natural Pharmaceutical Chemistry, College of Life Sciences, Shaanxi Normal University, Shaanxi, Xi'an, China.
Ultrasonics. 2010 Aug;50(8):803-10. doi: 10.1016/j.ultras.2010.04.004. Epub 2010 Apr 26.
The aim of the present study was to investigate the differences in pharmacokinetics, sub-cellular localizations and sonodynamic efficacy between endogenous and exogenous protoporphyrin IX (endo-PpIX and exo-PpIX) in sarcoma 180 (S180) cells.
The 5-aminolevulinic acid (ALA)-derived endo-PpIX and exo-PpIX pharmacokinetic profiles were determined by the fluorescence intensity of cell extracts with a spectrophotometer based on a standard curve. The changes in their sub-cellular localization patterns over a prolonged incubation time were evaluated by laser scanning confocal microscopy. The cytotoxic effects of 5-ALA-mediated sonodynamic therapy (ALA-SDT) and exogenous PpIX-mediated sonodynamic therapy (PpIX-SDT) were also evaluated by the MTT assay.
The exo-PpIX showed dose-dependent pharmacokinetics in which a plateau of intra- and extracellular content was observed 45min after administration. However, the amount of ALA-derived endogenous intracellular PpIX, as well as extracellular PpIX in the same samples, showed linear accumulation with incubation time, which was independent of ALA concentration. Fluorescent imaging revealed that the exo-PpIX mainly accumulated at the plasma membrane in the early stage, whereas the ALA-derived PpIX initially localized in the mitochondria. Cells displayed sonodynamic damage by the synthesized endo-PpIX after addition of 1mM ALA for 12h, but the cytotoxicity induced by the equivalent amount of exo-PpIX was much more significant with increasing ultrasound intensities.
Our findings suggest that endo- and exo-PpIX in S180 cells differ not only in pharmacokinetics but also in sub-cellular localizations, which may affect their sonodynamic efficacy and mechanisms of inducing cell death.
本研究旨在探讨肉瘤 180(S180)细胞内源性原卟啉 IX(endo-PpIX 和 exo-PpIX)与外源性原卟啉 IX(endo-PpIX 和 exo-PpIX)在药代动力学、亚细胞定位和超声动力学疗效方面的差异。
通过分光光度计基于标准曲线测定细胞提取物的荧光强度来确定 5-氨基酮戊酸(ALA)衍生的 endo-PpIX 和 exo-PpIX 的药代动力学曲线。通过激光扫描共聚焦显微镜评估其亚细胞定位模式随孵育时间的延长而发生的变化。通过 MTT 测定评估 5-ALA 介导的声动力学疗法(ALA-SDT)和外源性 PpIX 介导的声动力学疗法(PpIX-SDT)的细胞毒性作用。
外源性 PpIX 的药代动力学呈剂量依赖性,给药后 45min 观察到细胞内外含量达到平台期。然而,相同样品中 ALA 衍生的内源性细胞内 PpIX 以及细胞外 PpIX 的量随孵育时间呈线性积累,与 ALA 浓度无关。荧光成像显示外源性 PpIX 主要在早期积聚在质膜上,而 ALA 衍生的 PpIX 最初定位于线粒体。在用 1mM ALA 孵育 12h 后,添加合成的内源性 PpIX 可导致细胞发生声动力学损伤,但随着超声强度的增加,等量外源性 PpIX 诱导的细胞毒性更为显著。
我们的研究结果表明,S180 细胞中的内源性和外源性 PpIX 不仅在药代动力学方面存在差异,而且在亚细胞定位方面也存在差异,这可能影响其声动力学疗效和诱导细胞死亡的机制。