首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Poly(lactic acid) nanoparticles of the lead anticancer ruthenium compound KP1019 and its surfactant-mediated activation
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Poly(lactic acid) nanoparticles of the lead anticancer ruthenium compound KP1019 and its surfactant-mediated activation

机译:铅抗癌钌化合物KP1019的聚乳酸纳米粒子及其表面活性剂介导的活化

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摘要

Nanoparticle formulations offer besides the advantage of passive drug targeting also the opportunity to increase the stability of drugs. KP1019 is a lead ruthenium(III) compound which has been successfully tested in a clinical phase I trial. However, it is characterized by low stability in aqueous solution especially at physiological pH. To overcome this limitation, poly(lactic acid) (PLA) nanoparticles of KP1019 with two different surfactants (Pluronic F68 and Tween 80) were prepared by a single oil-in-water (o/w) emulsion. Cytotoxicity measurements comparing different aged Tween 80 nanoparticles revealed that the color change from brown to green was associated with an up to 20 fold increased activity compared to "free" KP1019. Further investigations suggested that this is based on the formation of enhanced intracellular reactive oxygen species levels. Additional studies revealed that the origin of the green color is a reaction between KP1019 and Tween 80. Kinetic studies of this reaction mixture using UV-Vis, ESI-MS and ESR spectroscopy indicated on the one hand a coordination of Tween 80 to KP1019, and on the other hand, the color change was found to correlate with a reduction of the Ru(III) center by the surfactant. Together, the results provide a first experimental approach to stabilize a biologically active Ru(II) species of KP1019 in aqueous solution, which probably can be also used to selectively generate this activated species in the tumor tissue via delivery of KP1019 using Tween 80 nanoparticles.
机译:纳米颗粒制剂除了提供被动靶向药物的优势外,还提供了增加药物稳定性的机会。 KP1019是钌(III)铅化合物,已在I期临床试验中成功测试。然而,其特征在于在水溶液中的稳定性低,特别是在生理pH下。为了克服此限制,通过一种水包油(o / w)乳液制备了KP1019的聚乳酸(PLA)纳米粒子和两种不同的表面活性剂(Pluronic F68和Tween 80)。比较不同老化的Tween 80纳米颗粒的细胞毒性测量结果表明,与“游离” KP1019相比,从棕色到绿色的颜色变化与活性增加多达20倍有关。进一步的研究表明,这是基于增强的细胞内活性氧种类水平的形成。其他研究表明,绿色的起源是KP1019与Tween 80之间的反应。使用UV-Vis,ESI-MS和ESR光谱对该反应混合物进行动力学研究,一方面表明Tween 80与KP1019之间的配位关系,以及另一方面,发现颜色变化与表面活性剂使Ru(III)中心降低有关。在一起,结果提供了第一个实验方法来稳定KP1019在水溶液中的生物活性Ru(II)物种,这可能还可以用于通过使用Tween 80纳米粒子递送KP1019在肿瘤组织中选择性地产生这种活化物种。

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