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A mechanistic study of cellular photodestruction with 5-aminolaevulinic acid-induced porphyrin.

机译:用5-氨基松香酸诱导的卟啉进行光致细胞破坏的机理研究。

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摘要

5-Aminolaevulinic acid (ALA)-induced porphyrin biosynthesis and phototoxicity in vitro was investigated in five malignant and two normal cell lines. Intracellular protoporphyrin IX (PpIX) content was quantified by extraction and fluorescence spectroscopy. Cellular PpIX content did not always correlate with cell proliferation rate as measured by the doubling times of cell lines. Cellular efflux of PpIX was also investigated. In a bladder carcinoma cell line, the observed rapid efflux was not blocked by verapamil, an inhibitor of the P-glycoprotein efflux pump. These data support the view that cellular PpIX accumulation is a dynamic process that is determined by both the efflux of PpIX from the cells and enzyme activities in the haem biosynthesis pathway. Desferrioxamine (desferal), a modulator of PpIX biosynthesis, enhanced ALA-induced cellular PpIX content significantly in all carcinoma cell lines but not in non-malignant cell lines. The enhanced PpIX cellular accumulation is attributed to inhibition of ferrochelatase activity, the enzyme responsible for the conversion of PpIX to haem. PpIX-mediated cellular photodestruction following irradiation with an argon ion laser at 514.5 nm was determined by the 'MTT assay'. There appeared to be a 'threshold' effect of cellular PpIX content; cells that synthesised less than 140 ng/mg-1 protein exhibited very little phototoxic damage, while cell lines having greater than 140 ng PpIX/mg-1 protein [corrected] exhibited a consistent phototoxic response. Among the cell lines which did undergo phototoxic damage, there was not a strict correlation between PpIX cellular content and ALA-induced phototoxicity. Desferal enhanced the PpIX content and phototoxic effect in the responsive cells. Fluorescence microscopy of the ALA-treated cells revealed marked accumulation of PpIX in mitochondria (rhodamine 123 co-staining). That the primary site of phototoxic damage is also the mitochondria was confirmed by electron micrographs of cells photosensitised with ALA-induced PpIX, which showed swelling of mitochondria within minutes after irradiation while other suborganelles appeared to be unaffected. The repair or further destruction of the mitochondria was fluence and cell-type dependent. The data from this study suggest that the basis of increased ALA-induced PpIX accumulation in tumours is a combination of various aspects of the metabolic process and pharmacokinetics and that the efficacy of photodestruction of malignancy will be determined not only by the rate of PpIX synthesis but also by specific cellular and tissue characteristics.
机译:在五个恶性和两个正常细胞系中研究了5-氨基戊酸(ALA)诱导的卟啉在体外的生物合成和光毒性。细胞内原卟啉IX(PpIX)含量通过提取和荧光光谱法定量。细胞PpIX含量并不总是与细胞株倍增时间所测得的细胞增殖速率相关。还研究了PpIX的细胞外排。在膀胱癌细胞系中,观察到的快速流出没有被维拉帕米(P-糖蛋白流出泵的抑制剂)阻断。这些数据支持以下观点:细胞中PpIX的积累是一个动态过程,该过程由细胞中PpIX的流出和血红素生物合成途径中的酶活性决定。 Desferrioxamine(desferal)是PpIX生物合成的调节剂,可在所有癌细胞系中显着增强ALA诱导的细胞PpIX含量,但在非恶性细胞系中则不会。 PpIX细胞积累的增加归因于铁螯合酶活性的抑制,该酶负责将PpIX转化为血红素。通过“ MTT测定”测定在514.5nm下用氩离子激光辐照后PpIX介导的细胞光解。细胞中PpIX含量似乎有一个“阈值”效应。合成少于140 ng / mg-1蛋白的细胞表现出非常小的光毒性损伤,而具有大于140 ng PpIX / mg-1蛋白[校正]的细胞系表现出一致的光毒性反应。在确实遭受光毒性损害的细胞系中,PpIX细胞含量与ALA诱导的光毒性之间没有严格的相关性。 Desferal增强了反应细胞中PpIX的含量和光毒性作用。经ALA处理的细胞的荧光显微镜检显示线粒体中PpIX显着积累(若丹明123共染色)。通过ALA诱导的PpIX光敏化的细胞的电子显微镜照片证实了光毒性损伤的主要部位也是线粒体,该照片显示了照射后数分钟内线粒体的肿胀,而其他亚细胞器似乎未受影响。线粒体的修复或进一步破坏取决于能量密度和细胞类型。这项研究的数据表明,ALA诱导的肿瘤中PpIX积累增加的基础是代谢过程和药代动力学各个方面的结合,并且恶性肿瘤光降解的功效不仅取决于PpIX的合成速率,还取决于还可以通过特定的细胞和组织特性来实现。

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