De León-Rodríguez Luis M, Martins André F, Pinho Marco C, Rofsky Neil M, Sherry A Dean
University of Auckland, Auckland, New Zealand.
Department of Chemistry, University of Texas at Dallas, Richardson, Texas, USA.
J Magn Reson Imaging. 2015 Sep;42(3):545-65. doi: 10.1002/jmri.24787. Epub 2015 May 14.
The diagnostic capabilities of magnetic resonance imaging (MRI) have undergone continuous and substantial evolution by virtue of hardware and software innovations and the development and implementation of exogenous contrast media. Thirty years since the first MRI contrast agent was approved for clinical use, a reliance on MR contrast media persists, largely to improve image quality with higher contrast resolution and to provide additional functional characterization of normal and abnormal tissues. Further development of MR contrast media is an important component in the quest for continued augmentation of diagnostic capabilities. In this review we detail the many important considerations when pursuing the design and use of MR contrast media. We offer a perspective on the importance of chemical stability, particularly kinetic stability, and how this influences one's thinking about the safety of metal-ligand-based contrast agents. We discuss the mechanisms involved in MR relaxation in the context of probe design strategies. A brief description of currently available contrast agents is accompanied by an in-depth discussion that highlights promising MRI contrast agents in the development of future clinical and research applications. Our intention is to give a diverse audience an improved understanding of the factors involved in developing new types of safe and highly efficient MR contrast agents and, at the same time, provide an appreciation of the insights into physiology and disease that newer types of responsive agents can provide.
凭借硬件和软件创新以及外源性造影剂的研发与应用,磁共振成像(MRI)的诊断能力持续大幅提升。自首款MRI造影剂获批临床使用至今已有三十年,目前仍依赖MR造影剂,主要是为了通过更高的对比分辨率提高图像质量,并对正常和异常组织进行额外的功能表征。MR造影剂的进一步发展是寻求持续提升诊断能力的重要组成部分。在本综述中,我们详细阐述了在研发和使用MR造影剂时需要考虑的诸多重要因素。我们阐述了化学稳定性,尤其是动力学稳定性的重要性,以及它如何影响人们对基于金属-配体的造影剂安全性的思考。我们在探针设计策略的背景下讨论了MR弛豫所涉及的机制。在简要介绍目前可用的造影剂的同时,还进行了深入讨论,重点介绍了在未来临床和研究应用开发中具有潜力的MRI造影剂。我们的目的是让不同受众更好地理解开发新型安全高效MR造影剂所涉及的因素,同时让大家认识到新型响应性造影剂能够提供的有关生理学和疾病的见解。