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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >H(2)CHXdedpa and H(4)CHXoctapa-Chiral Acyclic Chelating Ligands for Ga-67/68 and In-111 Radiopharmaceuticals
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H(2)CHXdedpa and H(4)CHXoctapa-Chiral Acyclic Chelating Ligands for Ga-67/68 and In-111 Radiopharmaceuticals

机译:用于Ga-67 / 68和In-111放射性药物的H(2)CHXdedpa和H(4)CHXoctapa-手性无环螯合配体

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摘要

The chiral acyclic ligands H(2)CHXdedpa (N4O2), H(2)CHXdedpa-bb (N4O2), and H(4)CHXoctapa (N4O4) (CHX = cyclohexyl/cyclohexane, H(2)dedpa = 1,2-[[6-carboxy-pyridin-2-yl]-methylamino]ethane, bb = N,N'-dibenzylated, H(4)octapa = N,N'-bis(6-carboxy-2-pyridylmethyl)-ethylenediamine-N,N'-diacetic acid) were synthesized, complexed with Ga(III) and/or In(III), and evaluated for their potential as chelating agents in radiopharmaceutical applications. The ligands were compared to the previously studied hexadentate H(2)dedpa and octadentate H(4)octapa ligands to determine the effect adding a chiral 1R,2R-trans-cyclohexane to replace the ethylenediamine backbone would have on metal complex stability and radiolabeling kinetics. It was found that [Ga(CHXdedpa)](+) showed very similar properties to those of [Ga(dedpa)](+), with only one isomer in solution observed by NMR spectroscopy, and minimal structural changes in the solid-state X-ray structure. Like [Ga(dedpa)](+), [Ga(CHXdedpa)](+) exhibited exceptionally high thermodynamic stability constants (log K= 28.11(8)), and the chelate retained the ability to labelGa quantitatively in 10 min at room temperature at ligand concentrations of 1 x 10(-5) M. In vitro kinetic inertness assays demonstrated the [Ga-67(CHXdedpa)](+) complex to be more stable than [Ga-67(dedpa)](+) in a human serum competition, with 90.5% and 77.8% of Ga-67 remaining chelate-bound after 2 h, respectively. Preliminary coordination studies of H(4)CHXoctapa with In(III) demonstrated [In(CHXoctapa)]- to have an equivalently high thermodynamically stable constant as [In(octapa)]-, with log K values of 27.16(9) and 26.76(14), respectively. The [In(CHXoctapa)]- complex showed exceptionally high in vitro kinetic inertness over 120 h in human serum, comparing well with previously reported [In-111(octapa)]- values, and an improved stability compared to the current industry gold standards 1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetic acid (DOTA) and diethylenetriaminepentaacetic acid (DTPA). Initial investigations reveal that the chiral acyclic hexadentate H(2)CHXdedpa and octadentate H(4)CHXoctapa ligands are ideal candidates for radiopharmaceutical elaboration of gallium or indium isotopes, respectively.
机译:手性无环配体H(2)CHXdedpa(N4O2),H(2)CHXdedpa-bb(N4O2)和H(4)CHXoctapa(N4O4)(CHX =环己基/环己烷,H(2)dedpa = 1,2- [[6-羧基-吡啶-2-基]-甲基氨基]乙烷,bb = N,N'-二苄基化,H(4)octapa = N,N'-双(6-羧基-2-吡啶基甲基)-乙二胺-合成了N,N'-二乙酸(N,N'-diacetic acid),与Ga(III)和/或In(III)络合,并评估了它们在放射性药物应用中作为螯合剂的潜力。将配体与先前研究的六齿H(2)dedpa和八齿H(4)octapa配体进行比较,以确定添加手性1R,2R-反式环己烷代替乙二胺骨架对金属配合物稳定性和放射性标记动力学的影响。发现[Ga(CHXdedpa)](+)与[Ga(dedpa)](+)表现出非常相似的性质,通过NMR光谱法观察到溶液中只有一种异构体,并且固态的结构变化极小X射线结构。像[Ga(dedpa)](+)一样,[Ga(CHXdedpa)](+)表现出异常高的热力学稳定性常数(log K = 28.11(8)),螯合物保留了在室温下10分钟内定量标记Ga的能力。在配体浓度为1 x 10(-5)M时,温度保持不变。体外动力学惰性分析表明,[Ga-67(CHXdedpa)](+)络合物比[Ga-67(dedpa)](+)更稳定。人血清竞争,分别在2小时后仍保留90.5%和77.8%的Ga-67结合螯合物。 H(4)CHXoctapa与In(III)的初步配位研究表明[In(CHXoctapa)]-具有与[In(octapa)]-相当高的热力学常数,log K值为27.16(9)和26.76 (14)。与以前报道的[In-111(octapa)]-值相比,[In(CHXoctapa)]-配合物在人血清中在120小时内表现出异常高的体外动力学惰性,与目前的行业金标准相比,稳定性更高1,4,7,10-四氮杂十二烷-1,4,7,10-四乙酸(DOTA)和二亚乙基三胺五乙酸(DTPA)。初步研究表明,手性无环六齿H(2)CHXdedpa和八齿H(4)CHXoctapa配体分别是镓或铟同位素放射性药物加工的理想候选者。

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