首页> 外文OA文献 >The effects of protoporphyrin IX-induced photodynamic therapy with and without iron chelation on human squamous carcinoma cells cultured under normoxic, hypoxic and hyperoxic conditions.
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The effects of protoporphyrin IX-induced photodynamic therapy with and without iron chelation on human squamous carcinoma cells cultured under normoxic, hypoxic and hyperoxic conditions.

机译:原卟啉IX诱导的光动力学疗法在有氧,无氧和高氧条件下培养的人鳞状细胞在有铁螯合和无铁螯合下的影响。

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摘要

BACKGROUND: Photodynamic therapy requires the combined interaction of a photosensitiser, light and oxygen to ablate target tissue. In this study we examined the effect of iron chelation and oxygen environment manipulation on the accumulation of the clinically useful photosensitiser protoporphyrin IX (PpIX) within human squamous epithelial carcinoma cells and the subsequent ablation of these cells on irradiation. METHODS: Cells were incubated at concentrations of 5%, 20% or 40% oxygen for 24h prior to and for 3h following the administration of the PpIX precursors aminolevulinic acid (ALA), methyl aminolevulinate (MAL) or hexylaminolevulinate (HAL) with or without the iron chelator 1,2-diethyl-3-hydroxypyridin-4-one hydrochloride (CP94). PpIX accumulation was monitored using a fluorescence plate reader, cells were irradiated with 37 J/cm(2) red light and cell viability measured using the neutral red uptake assay. RESULTS: Manipulation of the oxygen environment and/or co-administration of CP94 with PpIX precursors resulted in significant changes in both PpIX accumulation and photobleaching. Incubation with 5% or 40% oxygen produced the greatest levels of PpIX and photobleaching in cells incubated with ALA/MAL. Incorporation of CP94 also resulted in significant decreases in cell viability following administration of ALA/MAL/HAL, with oxygen concentration predominantly having a significant effect in cells incubated with HAL. CONCLUSIONS: Experimentation with human squamous epithelial carcinoma cells has indicated that the iron chelator CP94 significantly increased PpIX accumulation induced by each PpIX congener investigated (ALA/MAL/HAL) at all oxygen concentrations employed (5%/20%/40%) resulting in increased levels of photobleaching and reduced cell viability on irradiation. Further detailed investigation of the complex relationship of PDT cytotoxicity at various oxygen concentrations is required. It is therefore concluded that iron chelation with CP94 is a simple protocol modification with which it may be much easier to enhance clinical PDT efficacy than the complex and less well understood process of oxygen manipulation.
机译:背景:光动力疗法需要光敏剂,光和氧气的共同作用来消融靶组织。在这项研究中,我们研究了铁螯合和氧气环境操作对人鳞状上皮癌细胞内临床有用的光敏剂原卟啉IX(PpIX)积累的影响,以及随后在辐射下对这些细胞的消融作用。方法:在给予或不给予PpIX前体氨基乙酰丙酸(ALA),氨基乙酰丙酸甲酯(MAL)或己基氨基乙酰丙酸酯(HAL)之前和之后,将细胞在5%,20%或40%氧气浓度下孵育24小时。铁螯合剂1,2-二乙基-3-羟基吡啶-4-酮盐酸盐(CP94)。使用荧光板读数器监测PpIX积累,用37 J / cm(2)红光照射细胞,并使用中性红吸收测定法测量细胞活力。结果:氧气环境的操纵和/或CP94与PpIX前体的共同施用导致PpIX积累和光致漂白的显着变化。在与ALA / MAL一起孵育的细胞中,与5%或40%的氧气一起孵育会产生最高水平的PpIX和光致漂白。在施用ALA / MAL / HAL后,CP94的掺入还导致细胞活力的显着降低,其中氧浓度主要在与HAL孵育的细胞中具有显着的作用。结论:对人鳞状上皮癌细胞进行的实验表明,铁螯合剂CP94在所使用的所有氧气浓度(5%/ 20%/ 40%)下均显着增加了由研究的每种PpIX同系物(ALA / MAL / HAL)诱导的PpIX积累,导致增加了光漂白水平,降低了照射后的细胞活力。需要进一步研究各种氧浓度下PDT细胞毒性的复杂关系。因此得出的结论是,与CP94进行铁螯合是一种简单的方案修饰,通过它可以比复杂且鲜为人知的氧气处理过程更容易增强临床PDT的功效。

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