首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >A copper-activated magnetic resonance imaging contrast agent with improved turn-on relaxivity response and anion compatibility
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A copper-activated magnetic resonance imaging contrast agent with improved turn-on relaxivity response and anion compatibility

机译:具有改善的开启弛豫响应和阴离子相容性的铜活化磁共振成像造影剂

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摘要

We present the synthesis and characterization of Copper-Gad-7 (CG7), a new copper-activated magnetic resonance imaging (MRI) contrast agent that possesses a Gd3+-DO3A scaffold with an appended thioether-rich receptor for copper recognition. Installation of additional carboxylate groups on the periphery of the CG scaffold affords a practical strategy to increase the absolute relaxivity of these types of copper-responsive MRI sensors as well as reduce their sensitivity to biologically abundant anions. Due in large part to restricted access of inner-sphere water molecules to the paramagnetic Gd3+ core, in the absence of copper ions, CG7 exhibits a relatively low relaxivity value of r(1) = 2.6 mM(-1) s(-1); addition of Cu+ triggers a 340% enhancement in relaxivity to r(1) = 11.4 mM(-1) s(-1). For comparison, the relaxivity of the analogous CG2 sensor without peripheral carboxylates increases from r(1) = 1.5 to 6.9 mM(-1) s(-1) upon Cu+ binding. CG7 features high selectivity for Cu+ over a range of biologically relevant metal ions, including the cellular abundant alkali and alkaline earth cations and d-block ions Zn2+ and Cu2+. Moreover, the Cu+-response of the CG7 sensor is not significantly affected by bicarbonate, phosphate, citrate, and lactate anions at cellular levels. O-17 NMR dysprosium-induced shift (DIS) and nuclear magnetic relaxation dispersion (NMRD) experiments suggest that the origin of the improved anion compatibility of CG7 is a reduced q modulation compared to previous members of the CG family, and T-1-weighted phantom images confirm that CG7 can monitor changes in copper levels by MRI at clinically relevant field strengths.
机译:我们目前的合成和表征Copper-Gad-7(CG7),一种新型的铜激活的磁共振成像(MRI)造影剂,具有Gd3 + -DO3A支架,并带有用于铜识别的附加硫醚富集受体。在CG支架的外围安装额外的羧酸盐基团提供了一种实用的策略,可以提高这些类型的铜响应MRI传感器的绝对弛豫性,并降低其对生物丰富阴离子的敏感性。在很大程度上由于内球水分子对顺磁性Gd3 +核的访问受到限制,在没有铜离子的情况下,CG7的相对弛豫度为r(1)= 2.6 mM(-1)s(-1) ;添加Cu +会导致r(1)= 11.4 mM(-1)s(-1)的弛豫度提高340%。为了进行比较,没有外围羧酸盐的类似CG2传感器的弛豫度从r(1)= 1.5增加到Cu +结合后的6.9 mM(-1)s(-1)。 CG7在一系列生物相关的金属离子(包括细胞内丰富的碱金属和碱土金属阳离子以及d嵌段离子Zn2 +和Cu2 +)上对Cu +具有高选择性。此外,CG7传感器的Cu +响应在细胞水平上不受碳酸氢根,磷酸根,柠檬酸根和乳酸根阴离子的显着影响。 O-17 NMR s诱导的位移(DIS)和核磁弛豫弥散(NMRD)实验表明,与CG系列以前的成员和T-1-相比,CG7改善的阴离子相容性的起源是降低的q调制。加权的幻像图像证实CG7可以通过MRI在临床相关场强下监测铜水平的变化。

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