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Substituent Effect on the Structure and Biological Property of 99mTc-Labeled Diphosphonates: Theoretical Studies

机译:取代基对 99m Tc标记的二膦酸酯结构和生物学性质的影响:理论研究

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Theoretical calculations based on density functional theory (DFT) were performed to study the substituent effect on the geometric and electronic structures as well as the biological behavior of technetium-99m-labeled diphosphonate complexes. Optimized structures of these complexes are surrounded by six ligands in an octahedral environment with three unpaired 4d electrons (d3 state) and the optimized geometry of 99mTc-MDP agrees with experimental data. With the increase of electron-donating substituent or tether between phosphate groups, the energy gap between frontier orbitals increases and the probability of non-radiative deactivation via d-d electron transfer decreases. The charge distribution reflects a significant ligand-to-metal electron donation. Based on the calculated geometric and electronic structures and biologic properties of 99mTc-diphosphonate complexes, several structure-activity relationships (SARs) were established. These results may be instructive for the design and synthesis of novel 99mTc-diphosphonate bone imaging agent and other 99mTc-based radiopharmaceuticals.
机译:进行了基于密度泛函理论(DFT)的理论计算,以研究取代基对of-99m标记的二膦酸酯络合物的几何和电子结构以及生物学行为的影响。这些配合物的最佳结构在八面体环境中被六个配体所包围,具有三个不成对的4d电子(d3状态),并且99mTc-MDP的最佳几何形状与实验数据相符。随着供电子的取代基或磷酸根基团之间的系链的增加,前沿轨道之间的能隙增大,并且通过d-d电子转移引起的非辐射失活的可能性降低。电荷分布反映了重要的配体-金属电子捐赠。基于99mTc-二膦酸酯配合物的几何和电子结构及生物学特性,建立了几种构效关系。这些结果可能对设计和合成新型99mTc-二膦酸盐骨显像剂和其他基于99mTc的放射性药物具有指导意义。

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