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Facile synthesis and relaxation properties of novel bispolyazamacrocyclic Gd3+ complexes: An attempt towards calcium-sensitive MRI contrast agents

机译:新型双聚多糖大环Gd3 +复合物的简易合成和松弛特性:对钙敏感性mRI造影剂的尝试

摘要

Three novel GdD03A-type bismacrocyclic complexes, conjugated to Ca 2+ chelating moieties like ethylenediamine-tetraacetic acid and diethylenetriamine pentaacetic acid bisamides, were synthesized as potential "smart" magnetic resonance imaging contrast agents. Their sensitivity toward Ca2+ was studied by relaxometric titrations. A maximum relaxivity increase of 15, 6, and 32% was observed upon Ca2+ binding for Gd2L1, Gd2L2, and Gd 2L3, respectively (L1 = N,N-bis{1-[{[({1-[1,4, 7-tris(carboxymethyl)-1,4,7,10-tetraazacyclododecane-10-yl]eth-2-yl}amino) carbonyl]-methyl}-(carboxymethyl)amino]eth-2-yl}aminoacetic acid; L2 = N,N-bis[1-({[({α-[1,4,7-tris(carboxymethyl)-1,4,7,10- tetraazacyclododecane-10-yl]-p-tolylamino}carbonyl)methyl]-(carboxymethyl)} amino)eth-2-yl]aminoacetic acid; L3 = 1,2-bis[{[({1-[1,4,7- tris(carboxymethyl)-1,4,7,10-tetraazacyclododecane-10-yl]eth-2-yl}amino) carbonyl]methyl}-(carboxymethyl)amino]ethane). The apparent association constants are log KA = 3.6 ± 0.1 for Gd2L 1 and log KA = 3.4 ± 0.1 for Gd2L 3. For the interaction between Mg2+ and Gd 2L1, log KA = 2.7 ± 0.1 has been determined, while no relaxivity change was detected with Gd2L 3. Luminescence lifetime measurements on the Eu3+ complexes in the absence of Ca2+ gave hydration numbers of q = 0.9 (Eu2L1), 0.7 (Eu2L2), and 1.3 (Eu2L3). The parameters influencing proton relaxivity of the Gd3+ complexes were assessed by a combined nuclear magnetic relaxation dispersion (NMRD) and 17O NMR study. Water exchange is relatively slow on Gd2L1 and Gd2L2 (kex298 = 0.5 and 0.8 × 106 s -1), while it is faster on Gd2L3 (k ex298 = 80 × 106 s-1); in any case, it is not sensitive to the presence of Ca2+. The rotational correlation time, τR298, differs for the three complexes and reflects their rigidity. Due to the benzene linker, the Gd 2L2 complex is remarkably rigid, with a correspondingly high relaxivity despite the low hydration number (r1 = 10.2 mM -1s-1 at 60 MHz, 298 K). On the basis of all available experimental data from luminescence, 17O NMR, and NMRD studies on the Eu3+ and Gd3+ complexes of L1 and L 3 in the absence and in the presence of Ca2+, we conclude that the relaxivity increase observed upon Ca2+ addition can be mainly ascribed to the increase in the hydration number, and, to a smaller extent, to the Ca2+-induced rigidification of the complex. © 2008 American Chemical Society.
机译:合成了三种新颖的GdD03A型双大环复合物,它们与Ca 2+螯合部分如乙二胺四乙酸和二亚乙基三胺五乙酸双酰胺共轭,作为潜在的“智能”磁共振成像造影剂。通过弛豫滴定法研究了它们对Ca2 +的敏感性。当Ca2 +分别与Gd2L1,Gd2L2和Gd 2L3结合时,观察到最大弛豫度提高了15%,6%和32%(L1 = N,N-bis {1-[{(({1- [1,4, 7-三(羧甲基)-1,4,7,10-四氮杂环十二烷-10-基] eth-2-基}氨基)羰基]-甲基}-(羧甲基)氨基] eth-2-基}氨基乙酸; L2 = N,N-双[1-({[({α-[1,4,7-三(羧甲基)-1,4,7,10-四氮杂环十二烷-10-基]-对甲苯胺}羰基)甲基]-((羧甲基)}氨基)乙基-2-基]氨基乙酸; L3 = 1,2-双[{[({1- [1,4,7-三(羧甲基)-1,4,7,10 -四氮杂环十二烷-10-基]乙基-2-基}氨基)羰基]甲基}-(羧甲基)氨基]乙烷)。对于Gd2L 1,表观缔合常数为log KA = 3.6±0.1,对于Gd2L 3为log KA = 3.4±0.1。对于Mg2 +和Gd 2L1之间的相互作用,已确定log KA = 2.7±0.1,而未检测到弛豫度变化用Gd2L3。在不存在Ca2 +的情况下,对Eu3 +配合物的发光寿命进行测量,得出水合数分别为q = 0.9(Eu2L1),0.7(Eu2L2)和1.3(Eu2L3)。通过结合核磁弛豫弥散(NMRD)和17O NMR研究评估了影响Gd3 +配合物质子弛豫性的参数。 Gd2L1和Gd2L2的水交换相对较慢(kex298 = 0.5和0.8×106 s -1),而Gd2L3的水交换较快(k ex298 = 80×106 s-1);无论如何,它对Ca 2+的存在都不敏感。旋转相关时间τR298对于三个复合物有所不同,并反映了它们的刚度。由于存在苯连接基,尽管水合数低(60 MHz,298 K时r1 = 10.2 mM -1s-1),但Gd 2L2络合物非常坚硬,具有相应的高弛豫性。根据所有从发光,17O NMR和NMRD研究获得的关于L1和L 3在不存在和存在Ca2 +的情况下Eu3 +和Gd3 +配合物的实验数据,我们得出结论,添加Ca2 +后观察到的弛豫度增加可以是主要归因于水合数的增加,并且在较小程度上归因于Ca 2+诱导的复合物的刚性化。 ©2008美国化学学会。

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