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在什么情况下两份水比一份水更糟糕?使钆喷酸葡胺衍生物的水合数翻倍会降低弛豫率。

When are two waters worse than one? Doubling the hydration number of a Gd-DTPA derivative decreases relaxivity.

作者信息

Caravan Peter, Amedio John C, Dunham Stephen U, Greenfield Matthew T, Cloutier Normand J, McDermid Sarah A, Spiller Marga, Zech Stephan G, Looby Richard J, Raitsimring Arnold M, McMurry Thomas J, Lauffer Randall B

机构信息

EPIX Pharmaceuticals, Inc., 67 Rogers Street, Cambridge, MA 02142-1118, USA.

出版信息

Chemistry. 2005 Oct 7;11(20):5866-74. doi: 10.1002/chem.200500338.

Abstract

The synthesis of a novel ligand, based on N-methyl-diethylenetriaminetetraacetate and containing a diphenylcyclohexyl serum albumin binding group (L1) is described and the coordination chemistry and biophysical properties of its Gd(III) complex Gd-L1 are reported. The Gd(III) complex of the diethylenetriaminepentaacetate analogue of the ligand described here (L2) is the MRI contrast agent MS-325. The effect of converting an acetate to a methyl group on metal-ligand stability, hydration number, water-exchange rate, relaxivity, and binding to the protein human serum albumin (HSA) is explored. The complex Gd-L1 has two coordinated water molecules in solution, that is, [Gd(L1)(H2O)2]2- as shown by D-band proton ENDOR spectroscopy and implied by 1H and 17O NMR relaxation rate measurements. The Gd-H(water) distance of the coordinated waters was found to be identical to that found for Gd-L2, 3.08 A. Loss of the acetate group destabilizes the Gd(III) complex by 1.7 log units (log K(ML) = 20.34) relative to the complex with L2. The affinity of Gd-L1 for HSA is essentially the same as that of Gd-L2. The water-exchange rate of the two coordinated waters on Gd-L1 (k(ex) = 4.4x10(5) s(-1)) is slowed by an order of magnitude relative to Gd-L2. As a result of this slow water-exchange rate, the observed proton relaxivity of Gd-L1 is much lower in a solution of HSA under physiological conditions (r1(obs) = 22.0 mM(-1) s(-1) for 0.1 mM Gd-L1 in 0.67 mM HSA, HEPES buffer, pH 7.4, 35 degrees C at 20 MHz) than that of Gd-L2 (r1(obs) = 41.5 mM(-1) s(-1)) measured under the same conditions. Despite having two exchangeable water molecules, slow water exchange limits the potential efficacy of Gd-L1 as an MRI contrast agent.

摘要

本文描述了一种基于N-甲基二乙烯三胺五乙酸且含有二苯基环己基血清白蛋白结合基团的新型配体(L1)的合成,并报道了其钆(III)配合物Gd-L1的配位化学和生物物理性质。本文所述配体(L2)的二乙烯三胺五乙酸类似物的钆(III)配合物是磁共振成像(MRI)造影剂MS-325。研究了将乙酸根转化为甲基对金属-配体稳定性、水合数、水交换速率、弛豫率以及与蛋白质人血清白蛋白(HSA)结合的影响。配合物Gd-L1在溶液中有两个配位水分子,即[Gd(L1)(H2O)2]2-,如D波段质子电子核双共振光谱所示,1H和17O NMR弛豫速率测量也表明了这一点。发现配位水的Gd-H(水)距离与Gd-L2的相同,为3.08 Å。相对于与L2形成的配合物,乙酸根的缺失使钆(III)配合物的稳定性降低了1.7个对数单位(log K(ML) = 20.34)。Gd-L1对HSA的亲和力与Gd-L2基本相同。Gd-L1上两个配位水的水交换速率(k(ex) = 4.4x10(5) s(-1))相对于Gd-L2减慢了一个数量级。由于这种缓慢的水交换速率,在生理条件下HSA溶液中Gd-L1的观测质子弛豫率(在0.67 mM HSA、HEPES缓冲液、pH 7.4、35℃、20 MHz条件下,0.1 mM Gd-L1的r1(obs) = 22.0 mM(-1) s(-1))远低于在相同条件下测量的Gd-L2的弛豫率(r1(obs) = 41.5 mM(-1) s(-1))。尽管有两个可交换水分子,但缓慢的水交换限制了Gd-L1作为MRI造影剂的潜在功效。

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