首页> 外文期刊>Journal of Medicinal Chemistry >Comparative in Vivo Behavior Studies of Cyclen-Based Copper-64 Complexes:Regioselective Synthesis,X-ray Structure,Radiochemistry,log P,and Biodistribution
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Comparative in Vivo Behavior Studies of Cyclen-Based Copper-64 Complexes:Regioselective Synthesis,X-ray Structure,Radiochemistry,log P,and Biodistribution

机译:基于Cyclenn的铜64配合物的体内行为比较研究:区域选择性合成,X射线结构,放射化学,log P和生物分布

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The in vivo behavior of copper(II)-cyclen complexes was modified via substitution of the parent ligand with two different substituents,4-tert-butylbenzyl and acetate.This was achieved by using same synthetic strategy (regioselective protection/first alkylation/deprotection/second alkylation) to give nine cyclen derivatives.The X-ray structure of [Cu(2c)Cl]~+ (2c = 1-(4-tert-butylbenzyl)-l,4,7,10-tetraazacyclododecane) showed that the chlorine ion from the reaction mixture occupied the remaining apical position of a square pyramidal coordination environment of these Cu-cyclen complexes.Eight out of nine compounds were labeled with ~(64)Cu in high radiochemical purity,log P measurements showed that the lipophilicities of the copper complexes were increased dramatically by attaching hydrophobic substituents on the nitrogen atoms of cyclen.Conversely,as the number of acetate groups increased,the lipophilicity was decreased.The biodistribution of Cu-cyclen complexes was found to be influenced mostly by the overall charge of the complexes rather than their lipophilicity.Positively charged (+2) complexes showed high blood retention at early time points with sluggish clearance from liver by 24 h.The attachment of even one acetate group onto cyclen accelerated blood and liver clearance dramatically compared to +2 charged Cu(II) complexes.Neutral trans-substituted Cu-4 showed the best clearance and lowest retention of doses from all organs most time,followed by -1 charged complex Cu-2.Trans-substituted complexes structure isomers Cu-3 and Cu-4 showed better clearance and lower retention from all organs than their cis-counterparts Cu-5 and Cu-6.
机译:通过用两个不同的取代基4-叔丁基苄基和乙酸酯取代母体配体来修饰铜(II)-环蛋白络合物的体内行为,这是通过使用相同的合成策略(区域选择性保护/第一烷基化/去保护/ [Cu(2c)Cl]〜+(2c = 1-(4-叔丁基苄基)-1,4,7,10-四氮杂环十二烷)的X射线结构表明反应混合物中的氯离子占据了这些Cu-环素配合物的方形金字塔配位环境的其余顶端位置。九种化合物中的八种以〜(64)Cu标记,具有高放射化学纯度,log P测量表明该化合物的亲脂性反之,随着乙酸根基团数量的增加,亲脂性降低,铜络合物通过在环素的氮原子上附着疏水取代基而急剧增加。发现铜环素络合物的生物分布是有影响的。正电荷(+2)的复合物在早期显示出较高的血液滞留性,并在24小时内从肝脏清除缓慢,甚至将一个乙酸酯基团附着在周期加速的血液和与+2带电荷的Cu(II)配合物相比,肝脏清除率显着提高。中性反式取代的Cu-4在大多数时间内显示出所有器官的最佳清除率和最低的保留剂量,随后是-1电荷的配合物Cu-2。结构异构体Cu-3和Cu-4与顺式对应物Cu-5和Cu-6相比,在所有器官中表现出更好的清除率和更低的保留率。

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