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Double agents and secret agents: the emerging fields of exogenous chemical exchange saturation transfer and T2-exchange magnetic resonance imaging contrast agents for molecular imaging

机译:双重作用剂和秘密作用剂:外源性化学交换饱和转移和T 2 交换磁共振成像造影剂用于分子成像的新兴领域

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Two relatively new types of exogenous magnetic resonance imaging contrast agents may provide greater impact for molecular imaging by providing greater specificity for detecting molecular imaging biomarkers. Exogenous chemical exchange saturation transfer (CEST) agents rely on the selective saturation of the magnetization of a proton on an agent, followed by chemical exchange of a proton from the agent to water. The selective detection of a biomarker-responsive CEST signal and an unresponsive CEST signal, followed by the ratiometric comparison of these signals, can improve biomarker specificity. We refer to this improvement as a "double-agent" approach to molecular imaging. Exogenous T2-exchange agents also rely on chemical exchange of protons between the agent and water, especially with an intermediate rate that lies between the slow exchange rates of CEST agents and the fast exchange rates of traditional T1 and T2 agents. Because of this intermediate exchange rate, these agents have been relatively unknown and have acted as "secret agents" in the contrast agent research field. This review exposes these secret agents and describes the merits of double agents through examples of exogenous agents that detect enzyme activity, nucleic acids and gene expression, metabolites, ions, redox state, temperature, and pH. Future directions are also provided for improving both types of contrast agents for improved molecular imaging and clinical translation. Therefore, this review provides an overview of two new types of exogenous contrast agents that are becoming useful tools within the armamentarium of molecular imaging.
机译:两种相对新型的外源性磁共振成像造影剂可通过提供更大的特异性来检测分子成像生物标记物,从而对分子成像产生更大的影响。外源化学交换饱和转移(CEST)试剂依赖于质子在试剂上磁化的选择性饱和,然后是质子从试剂到水的化学交换。选择性检测生物标记物响应的CEST信号和无反应的CEST信号,然后对这些信号进行比例比较,可以提高生物标记物的特异性。我们称这种改进为分子成像的“双试剂”方法。外源性T 2 交换剂还依赖于质子与水之间的质子化学交换,特别是中间价介于CEST剂的慢速交换率与传统T <2>的快速交换率之间。 sub> 1 和T 2 代理。由于这种中间汇率,这些试剂相对未知,并在造影剂研究领域中充当“秘密试剂”。这篇综述揭示了这些秘密药剂,并通过检测酶活性,核酸和基因表达,代谢产物,离子,氧化还原状态,温度和pH的外源药剂的实例描述了双重药剂的优点。还提供了改进两种造影剂以改善分子成像和临床翻译的未来方向。因此,本综述概述了两种新型的外源性造影剂,它们正在成为分子成像设备中的有用工具。

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