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基于聚(有机)磷腈的金属药物偶联物的合成及体内抗癌评价。

Synthesis and in vivo anticancer evaluation of poly(organo)phosphazene-based metallodrug conjugates.

机构信息

Institute of Inorganic Chemistry, University of Vienna, Waehringer Str. 42, 1090 Wien, Austria.

Institute of Polymer Chemistry, Johannes Kepler University Linz (JKU), Altenberger Straße 69, 4040 Linz, Austria.

出版信息

Dalton Trans. 2017 Sep 28;46(36):12114-12124. doi: 10.1039/c7dt01767g. Epub 2017 Sep 1.

Abstract

Within this work we aimed to improve the pharmacodynamics and toxicity profile of organoruthenium and -rhodium complexes which had previously been found to be highly potent in vitro but showed unselective activity in vivo. Different organometallic complexes were attached to a degradable poly(organo)phosphazene macromolecule, prepared via controlled polymerization techniques. The conjugation to hydrophilic polymers was designed to increase the aqueous solubility of the typically poorly soluble metal-based half-sandwich compounds with the aim of a controlled, pH-triggered release of the active metallodrug. The synthesized conjugates and their characteristics have been thoroughly studied by means of P NMR and UV-Vis spectroscopy, ICP-MS analyses and SEC coupled to ICP-MS. In order to assess their potential as possible anticancer drug candidates, the complexes, as well as their respective macromolecular prodrug formulations were tested against three different cancer cell lines in cell culture. Subsequently, the anticancer activity and organ distribution of the poly(organo)phosphazene drug conjugates were explored in vivo in mice bearing CT-26 colon carcinoma. Our investigations revealed a beneficial influence of this macromolecular prodrug by a significant reduction of adverse effects compared to the free metallodrugs.

摘要

在这项工作中,我们旨在改善先前发现具有高度体外效力但在体内显示非选择性活性的有机钌和铑配合物的药效学和毒性特征。不同的有机金属配合物被连接到可降解的聚(有机)磷腈大分子上,该大分子是通过控制聚合技术制备的。与亲水性聚合物的连接旨在提高通常水溶性差的基于金属的半夹心化合物的水溶性,目的是控制、pH 触发释放活性金属药物。通过 P NMR 和 UV-Vis 光谱、ICP-MS 分析以及 SEC 与 ICP-MS 偶联,对合成的缀合物及其特性进行了深入研究。为了评估它们作为潜在抗癌药物候选物的潜力,将这些配合物及其各自的大分子前药制剂在细胞培养中针对三种不同的癌细胞系进行了测试。随后,在携带 CT-26 结肠癌细胞的小鼠中体内研究了聚(有机)磷腈药物缀合物的抗癌活性和器官分布。我们的研究表明,这种大分子前药具有有益的影响,与游离金属药物相比,不良反应显著减少。

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