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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Towards extracellular Ca2+ sensing by MRI: synthesis and calcium-dependent H-1 and O-17 relaxation studies of two novel bismacrocyclic Gd3+ complexes
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Towards extracellular Ca2+ sensing by MRI: synthesis and calcium-dependent H-1 and O-17 relaxation studies of two novel bismacrocyclic Gd3+ complexes

机译:通过MRI进行细胞外Ca2 +感测:两种新型双大环Gd3 +复合物的合成以及钙依赖性H-1和O-17弛豫研究

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摘要

Two new bismacrocyclic Gd3+ chelates containing a specific Ca2+ binding site were synthesized as potential MRI contrast agents for the detection of Ca2+ concentration changes at the millimolar level in the extracellular space. In the ligands, the Ca(2+)sensitive BAPTA-bisamide central part is separated from the DO3A macrocycles either by an ethylene (L-1) or by a propylene (L-2) unit [H(4)BAPTA is 1,2-bis(o-aminophenoxy)ethane-N,N,N',N'-tetraacetic acid; H(3)DO(3)A is 1,4,7,10-tetraazacyclododecane-1,4,7-triacetic acid]. The sensitivity of the Gd3+ complexes towards Ca2+ and Mg2+ was studied by H-1 relaxometric titrations. A maximum relaxivity increase of 15 and 10% was observed upon Ca2+ binding to Gd2L1 and Gd(2)L2, respectively, with a distinct selectivity of Gd2L1 towards Ca2+ compared with Mg2+. For Ca2+ binding, association constants of log K = 1.9 (Gd2L1) and log K = 2.7 (Gd2L2) were determined by relaxometry. Luminescence lifetime measurements and UV-vis spectrophotometry on the corresponding Eu3+ analogues proved that the complexes exist in the form of monohydrated and nonhydrated species; Ca2+ binding in the central part of the ligand induces the formation of the monohydrated state. The increasing hydration number accounts for the relaxivity increase observed on Ca2+ addition. A H-1 nuclear magnetic relaxation dispersion and O-17 NMR study on Gd2L1 in the absence and in the presence of Ca2+ was performed to assess the microscopic parameters influencing relaxivity. On Ca2+ binding, the water exchange is slightly accelerated, which is likely related to the increased steric demand of the central part leading to a destabilization of the Ln-water binding interaction.
机译:合成了两个含有特定Ca2 +结合位点的新的双大环Gd3 +螯合物,作为潜在的MRI造影剂,用于检测细胞外空间中毫摩尔水平的Ca2 +浓度变化。在配体中,通过乙烯(L-1)或丙烯(L-2)单元将Ca(2+)敏感的BAPTA-双酰胺中心部分与DO3A大环分开[H(4)BAPTA为1, 2-双(邻氨基苯氧基)乙烷-N,N,N',N'-四乙酸; H(3)DO(3)A是1,4,7,10-四氮杂环十二烷-1,4,7-三乙酸]。通过H-1弛豫滴定法研究了Gd3 +复合物对Ca2 +和Mg2 +的敏感性。当Ca2 +分别与Gd2L1和Gd(2)L2结合时,观察到最大弛豫度增加15%和10%,与Mg2 +相比,Gd2L1对Ca2 +的选择性明显不同。对于Ca 2+结合,通过弛豫法确定log K = 1.9(Gd2L1)和log K = 2.7(Gd2L2)的缔合常数。相应的Eu3 +类似物的发光寿命测量和紫外可见分光光度法证明了络合物以一水合和非水合形式存在。 Ca 2+在配体中心部分的结合诱导一水合状态的形成。水合数的增加解释了添加Ca2 +时观察到的弛豫度增加。在不存在和存在Ca2 +的情况下,对Gd2L1进行了H-1核磁弛豫分散和O-17 NMR研究,以评估影响弛豫性的微观参数。在Ca2 +结合上,水交换略有加速,这很可能与中央部分的空间需求增加有关,导致Ln-水结合相互作用的不稳定。

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