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Synthesis, characterization and biodistribution of bisphosphonates Sm-153 complexes: correlation with molecular modeling interaction studies

机译:双膦酸盐sm-153复合物的合成,表征和生物分布:与分子建模相互作用研究的相关性

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摘要

Bisphosphonates (BPs) are characterized by a P-C-P backbone structure and two phosphonic acid groups bonded to the same carbon, and are established as osteoclast-mediated bone resorption inhibitors. The nature of the groups attached to the central carbon atom are responsible in determining the potency of bisphosphonates as anti-resorption drugs. However, it is not yet clear the exact relationship between their molecular structure and pharmacologic activities. In this study, molecular geometries of pamidronate, alendronate and neridronate, differing only in the length of the aliphatic chains, were predicted by molecular mechanics and their interactions with hydroxyapatite, the main bone mineral component, were examined. We report the synthesis and radiochemical characterization of 153Sm complexes with pamidronate, alendronate and neridronate. Hydroxyapatite binding and biodistribution studies of these complexes have shown a good correlation with the theoretical molecular modeling interaction studies. So, it is possible to conclude that computational chemistry techniques are a good approach to evaluate specific interactions and may play a relevant role in determining the relative ability of BPs to mineral bone, and open new perspectives to the design of new BPs with increased pharmacological activity. These techniques could be extended to BPs as ligands to carrier radioactive metals, aiming for new bone therapeutic radiopharmaceuticals.
机译:双膦酸酯(BP)的特征是P-C-P主链结构和两个键合在同一碳上的膦酸基团,并被确立为破骨细胞介导的骨吸收抑制剂。与中心碳原子相连的基团的性质决定了双膦酸酯作为抗吸收药的效力。然而,尚不清楚它们的分子结构与药理活性之间的确切关系。在这项研究中,通过分子力学预测了仅在脂肪族链长度上不同的帕米膦酸,阿仑膦酸和神经磷酸酯的分子几何结构,并研究了它们与主要骨矿物质羟基磷灰石的相互作用。我们报告了153Sm配合物与帕米膦酸,阿仑膦酸盐和神经氨酸酯的合成和放射化学表征。这些复合物的羟基磷灰石结合和生物分布研究已显示出与理论分子模型相互作用研究的良好相关性。因此,有可能得出结论,计算化学技术是评估特定相互作用的好方法,并且可能在确定BP与矿物质骨的相对能力方面起着相关作用,并为设计具有更高药理活性的新BP开辟了新视野。 。这些技术可以扩展到BPs,作为载体放射性金属的配体,以开发新的骨治疗性放射性药物为目标。

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