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Advantages of macromolecular to nanosized chemical-exchange saturation transfer agents for MRI applications

机译:大分子到纳米级化学交换饱和转移剂在MRI应用中的优势

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摘要

Chemical-exchange saturation transfer (CEST) agents are a new class of MRI contrast agents that offer a number of advantages over conventional Gd3+ agents. Over the past few years, a variety of small-molecule CEST agents responsive to physiological conditions, such as pH and temperature, have been designed and their imaging applications have been reported. One of the major drawbacks of current small-molecule CEST agents is their relatively low sensitivity. The advantages of using macromolecular and nanosized systems with large numbers of exchangeable groups to improve contrast sensitivity are highlighted in this brief review. Although this approach has been shown to amplify contrast sensitivity, other limitations, including relatively small chemical-shift differences between the exchanging species and bulk water and less than optimal proton exchange rates, still exist. By addressing these issues, it is anticipated that CEST agents will find useful applications in the detection of specific biomarkers of disease.
机译:化学交换饱和转移(CEST)剂是一类新的MRI造影剂,与传统的Gd 3 + 剂相比具有许多优势。在过去的几年中,已经设计了对诸如pH和温度的生理条件有响应的各种小分子CEST试剂,并且已经报道了它们的成像应用。当前的小分子CEST试剂的主要缺点之一是其相对较低的敏感性。在这篇简短的综述中,强调了使用具有大量可交换基团的大分子和纳米系统提高对比度灵敏度的优势。尽管已表明该方法可增强对比度灵敏度,但仍存在其他局限性,包括交换物种与大量水之间的化学位移差异较小,以及质子交换速率不足。通过解决这些问题,可以预期CEST试剂将在检测疾病的特定生物标记物中找到有用的应用。

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