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Nanoparticles-based fluorescent conjugates for MRI contrast agents and bioimaging

机译:基于纳米粒子的MRI造影剂和生物成像荧光偶联物

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Magnetic resonance imaging (MRI) is a useful tool in clinical diagnostic field because it has higher spatial resolution and contrast in soft tissue than other imaging procedures. The MRI method is based on the magnetic property of protons that align themselves in a very large magnetic field and the main MRI parameters are spin-lattice (T1) and spin-spin (T2) relaxation rates and times. The contrast agents are used to shorten relaxation times and can be classified in several ways based on their chemical nature, magnetic properties, biodistribution etc. The majority of MRI contrast agents, including the most widely used gadolinium-based ones, modify T1 relaxation. Although the toxicity of many gadolinium-based contrast agents is still under discussion. The superparamagnetic FeO-nanoparticles, being much less popular and acting upon T2 relaxation, are getting growing interest as they are less toxic and capable for conjugation, which gives way to new promising multimodal agents for bioimaging.
机译:磁共振成像(MRI)在临床诊断领域是一种有用的工具,因为与其他成像程序相比,它在软组织中具有更高的空间分辨率和对比度。 MRI方法基于质子的磁性,该质子在非常大的磁场中对齐,并且MRI的主要参数是自旋晶格(T1)和自旋自旋(T2)弛豫率和时间。造影剂用于缩短弛豫时间,可以根据其化学性质,磁性,生物分布等以几种方式进行分类。大多数MRI造影剂,包括最广泛使用的g基造影剂,都会改变T1弛豫。尽管许多基于-的造影剂的毒性仍在讨论中。超顺磁性的FeO-纳米粒子不那么受欢迎并且起着T2弛豫的作用,因为它们的毒性较小并且能够结合,因此受到越来越多的关注,这为新的有望用于生物成像的多峰态试剂铺平了道路。

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