用于磁共振成像和光谱学的环境敏感顺磁和反磁对比剂。
Environmentally sensitive paramagnetic and diamagnetic contrast agents for nuclear magnetic resonance imaging and spectroscopy.
机构信息
Instituto de Investigaciones Biomédicas Alberto Sols-CSIC/UAM, c/Arturo Duperier 4, Madrid, Spain.
出版信息
Curr Top Med Chem. 2011;11(1):115-30. doi: 10.2174/156802611793611904.
Even though alterations in the microenvironmental properties of tissues underlie the development of the most prevalent and morbid pathologies, they are not directly observable in vivo by Magnetic Resonance Imaging (MRI) or Spectroscopy (MRS) methods. This circumstance has lead to the development of a wide variety of exogenous paramagnetic and diamagnetic MRI and MRS probes able to inform non invasively on microenvironmental variables such as pH, pO(2), ion concentration o even temperature. This review covers the fundamentals of environmental contrast and the current arsenal of endogenous and exogenous MRI and MRS contrast enhancing agents available to visualize it. We begin describing the physicochemical background necessary to understand paramagnetic and diamagnetic contrast enhancement with a special reference to novel magnetization transfer and (13)C hyperpolarization strategies. We describe then the main macrocyclic structures used to support the environmentally sensitive paramagnetic sensors, including CEST and PARACEST pH sensitive probes, temperature probes and enzyme activity or gene expression activatable probes. Finally we address the most commonly used diamagnetic contrast agents including imidazolic derivatives to reveal extracellular pH and tissue pO(2) values by MRS. The potential applications of these agents in multimodal and molecular imaging approaches are discussed.
尽管组织微环境特性的改变是大多数常见和严重疾病发展的基础,但它们不能通过磁共振成像 (MRI) 或光谱 (MRS) 方法在体内直接观察到。这种情况导致了广泛的外源性顺磁和抗磁性 MRI 和 MRS 探针的发展,这些探针能够非侵入性地提供有关 pH 值、pO2、离子浓度甚至温度等微环境变量的信息。这篇综述涵盖了环境对比的基本原理和当前可用于可视化它的内源性和外源性 MRI 和 MRS 对比增强剂的武器库。我们首先描述了理解顺磁和抗磁对比增强所需的物理化学背景,特别提到了新型磁化转移和 (13)C 超极化策略。然后,我们描述了用于支持环境敏感顺磁传感器的主要大环结构,包括 CEST 和 PARACEST pH 敏感探针、温度探针以及酶活性或基因表达可激活探针。最后,我们讨论了最常用的抗磁性对比剂,包括用于通过 MRS 揭示细胞外 pH 值和组织 pO2 值的咪唑衍生物。讨论了这些试剂在多模态和分子成像方法中的潜在应用。