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首页> 外文期刊>NMR in biomedicine >Advantages of paramagnetic chemical exchange saturation transfer (CEST) complexes having slow to intermediate water exchange properties as responsive MRI agents
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Advantages of paramagnetic chemical exchange saturation transfer (CEST) complexes having slow to intermediate water exchange properties as responsive MRI agents

机译:具有慢至中间水交换特性的顺磁性化学交换饱和转移(CEST)复合物作为响应性MRI试剂的优势

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摘要

Paramagnetic chemical exchange saturation transfer (PARACEST) complexes are exogenous contrast agents that have great potential to further extend the functional and molecular imaging capabilities of magnetic resonance. As a result of the presence of a central paramagnetic lanthanide ion (Ln~(3+) ≠ La~(3+), Gd~(3+), Lu~(3+)) within the chelate, the resonance frequencies of exchangeable protons bound to the PARACEST agent are shifted far away from the bulk water frequency. This large chemical shift, combined with an extreme sensitivity to the chemical exchange rate, make PARACEST agents ideally suited for the reporting of significant biological metrics, such as temperature, pH and the presence of metabolites. In addition, the ability to turn PARACEST agents ‘off’ and ‘on’ using a frequency-selective saturation pulse gives them a distinct advantage over Gd~(3+)-based contrast agents. A current challenge for PARACEST research is the translation of the promising in vitro results into in vivo systems. This short review article first describes the basic theory behind PARACEST contrast agents, their benefits over other contrast agents and their applications to MRI. It then describes some of the recent PARACEST research results: specifically, pH measurements using water molecule exchange rate modulation, T_2 exchange contrast caused by water molecule exchange, the use of ultrashort TEs (TE{L-End} <10μs) to overcome T_2 exchange line broadening and the potential application of T_2 exchange as a new contrast mechanism for MRI.
机译:顺磁性化学交换饱和转移(PARACEST)复合物是外源性造影剂,具有进一步扩展磁共振功能和分子成像功能的巨大潜力。由于螯合物内存在中心顺磁性镧系元素离子(Ln〜(3+)≠La〜(3 +),Gd〜(3 +),Lu〜(3+)),共振频率可交换结合到PARACEST剂上的质子远离大量水频移。这种巨大的化学位移,加上对化学交换速率的极高敏感性,使PARACEST试剂非常适合用于报告重要的生物学指标,例如温度,pH和代谢产物的存在。此外,使用频率选择性饱和脉冲“关闭”和“打开” PARACEST剂的能力使它们相对于基于Gd〜(3+)的造影剂具有明显的优势。 PARACEST研究的当前挑战是将有希望的体外结果转化为体内系统。这篇简短的评论文章首先介绍了PARACEST造影剂背后的基本理论,与其他造影剂相比的优势及其在MRI中的应用。然后,它描述了PARACEST的一些最新研究结果:具体而言,使用水分子交换速率调节进行pH测量,由水分子交换引起的T_2交换对比度,使用超短TE(TE {L-End} <10μs)克服T_2交换线拓宽和T_2交换作为MRI的新对比机制的潜在应用。

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