Institute for Organic Chemistry, University of Tuebingen, Tuebingen, Germany.
Bioorg Med Chem. 2011 Jun 1;19(11):3520-6. doi: 10.1016/j.bmc.2011.04.015. Epub 2011 Apr 13.
Amino-bisphosphonates (alendronate, pamidronate) were covalently linked in a three step synthesis, with protected and triazolylated derivatives of therapeutically used nucleoside analogs (5-FdU, araC, AZT) by substitution of their triazolyl residue. From the deprotected and chromatographically purified reaction mixtures N⁴-[alkyl-(hydroxyphosphono) phosphonate]-cytidine combining two differently cytotoxic functions were obtained. This new family of bisphosphonates (BPs) contains as novelty an alkyl side chain with a cytotoxic nucleoside. The BPs moiety allows for a high binding to hydroxyapatite which is a prerequisite for bone targeting of the drugs. In vitro binding of 5-FdU-alendronate (5-FdU-ale) to hydroxyapatite showed a sixfold increased binding of these BPs as compared to 5-FdU. Exploratory cytotoxic properties of 5-FdU-ale were tested on a panel of human tumor cell lines resulting in growth inhibition ranging between 5% and 38%. The determination of IC₅₀-concentrations of the conjugate in Lewis lung carcinoma and murine macrophages showed an incubation time dependent growth inhibition with higher sensitivity towards the tumor cells. We assume that the antimetabolite-BPs can be cleaved into different active metabolites that may exert cytotoxic and other therapeutic effects. However, the underlying mechanisms of these promising new antimetabolite-BPs conjugates remain to be evaluated in future experiments.
氨基双膦酸盐(阿仑膦酸钠、帕米膦酸二钠)通过取代其三唑基残基,与治疗用核苷类似物(5-FdU、阿糖胞苷、AZT)的保护和三唑基衍生物进行了三步合成的共价连接。从脱保护和色谱纯化的反应混合物中获得了 N⁴-[烷基-(羟膦基)膦酸]-胞苷,它结合了两种不同的细胞毒性功能。这种新的双膦酸盐(BP)家族的新颖之处在于含有具有细胞毒性的核苷的烷基侧链。BP 部分允许与羟基磷灰石高度结合,这是药物靶向骨骼的前提。5-FdU-阿仑膦酸钠(5-FdU-ale)与羟基磷灰石的体外结合显示,与 5-FdU 相比,这些 BP 的结合增加了六倍。对一系列人类肿瘤细胞系进行了 5-FdU-ale 的探索性细胞毒性特性测试,结果导致生长抑制率在 5%至 38%之间。在 Lewis 肺癌和鼠巨噬细胞中测定该缀合物的 IC₅₀-浓度时,显示出与孵育时间相关的生长抑制作用,对肿瘤细胞的敏感性更高。我们假设代谢物-BP 可以被切割成不同的活性代谢物,这些代谢物可能发挥细胞毒性和其他治疗作用。然而,这些有前途的新代谢物-BP 缀合物的潜在机制仍需在未来的实验中进行评估。