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Towards polymetallic lanthanide complexes as dual contrast agents for magnetic resonance and optical imaging

机译:迈向多金属镧系元素络合物,作为磁共振和光学成像的双重造影剂

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摘要

Magnetic resonance imaging (MRI) is a popular imaging technique in medical diagnostics. With the development of contrast agents, interest in its applications has grown tremendously. Significant effort has been made in order to identify the most important parameters that enhance the relaxation efficiency of MRI probes. Taking into account the requirements for an optimal magnetic performance, different contrast agents have been synthesized and studied. Moreover, novel bimodal probes have been developed in order to exploit the high sensitivity and resolution of optical microscopy with the ability of MRI to image opaque samples. Employing this strategy enables the simultaneous visualization of the same biological structures at different resolutions and depths. Throughout this review, different approaches used to improve relaxivity, especially by increasing the molecular volume and hence the rotational tumbling time of the agent, are highlighted. Several ways to obtain bimodal contrast agents are discussed in detail. Finally, lanthanide complexes incorporating an aromatic unit permitting efficient sensitization of lanthanide luminescence in combination with the relaxometric properties of gadolinium analogues are listed.
机译:磁共振成像(MRI)是医学诊断中一种流行的成像技术。随着造影剂的发展,对其应用的兴趣大大增加。为了确定增强MRI探针弛豫效率的最重要参数,已经做出了巨大的努力。考虑到最佳磁性能的要求,已经合成和研究了不同的造影剂。此外,已开发出新颖的双峰探针,以利用光学显微镜的高灵敏度和分辨率以及MRI对不透明样品成像的能力。采用这种策略可以使不同分辨率和深度的相同生物结构同时可视化。在整个本综述中,突出了用于改善弛豫性的不同方法,特别是通过增加分子体积以及因此增加试剂的旋转翻滚时间来改善弛豫性的方法。详细讨论了获得双峰造影剂的几种方法。最后,列出了掺入芳族单元的镧系元素络合物,其允许镧系元素发光的有效敏化以及of类似物的弛豫特性。

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