Laboratoire MATEIS, INSA de Lyon, 69621, Villeurbanne Cedex, France.
Department for Physiology of Cognitive Processes, Max Planck Institute for Biological Cybernetics, 72076, Tübingen, Germany.
Small. 2015 Oct 7;11(37):4900-9. doi: 10.1002/smll.201500312. Epub 2015 Jul 14.
The preparation of ultrasmall and rigid platforms (USRPs) that are covalently coupled to macrocycle-based, calcium-responsive/smart contrast agents (SCAs), and the initial in vitro and in vivo validation of the resulting nanosized probes (SCA-USRPs) by means of magnetic resonance imaging (MRI) is reported. The synthetic procedure is robust, allowing preparation of the SCA-USRPs on a multigram scale. The resulting platforms display the desired MRI activity—i.e., longitudinal relaxivity increases almost twice at 7 T magnetic field strength upon saturation with Ca(2+). Cell viability is probed with the MTT assay using HEK-293 cells, which show good tolerance for lower contrast agent concentrations over longer periods of time. On intravenous administration of SCA-USRPs in living mice, MRI studies indicate their rapid accumulation in the renal pelvis and parenchyma. Importantly, the MRI signal increases in both kidney compartments when CaCl2 is also administrated. Laser-induced breakdown spectroscopy experiments confirm accumulation of SCA-USRPs in the renal cortex. To the best of our knowledge, these are the first studies which demonstrate calcium-sensitive MRI signal changes in vivo. Continuing contrast agent and MRI protocol optimizations should lead to wider application of these responsive probes and development of superior functional methods for monitoring calcium-dependent physiological and pathological processes in a dynamic manner.
本文报道了超小刚性平台(USRPs)的制备及其与大环基、钙响应/智能对比剂(SCAs)的共价偶联,以及通过磁共振成像(MRI)对所得纳米探针(SCA-USRPs)的初步体外和体内验证。该合成方法具有很强的稳健性,允许在多克规模上制备 SCA-USRPs。所得平台显示出所需的 MRI 活性,即在 7 T 磁场强度下,用 Ca(2+)饱和时,纵向弛豫率增加近两倍。使用 HEK-293 细胞通过 MTT 测定法探测细胞活力,结果表明细胞对较低浓度的对比剂具有较长时间的良好耐受性。在活体小鼠中静脉注射 SCA-USRPs 后,MRI 研究表明它们在肾盂和实质中的快速积累。重要的是,当同时给予 CaCl2 时,两个肾脏部位的 MRI 信号均增加。激光诱导击穿光谱实验证实了 SCA-USRPs 在肾皮质中的积累。据我们所知,这些是首次在体内证明钙敏感 MRI 信号变化的研究。继续进行对比剂和 MRI 方案优化,应该会导致这些响应性探针的更广泛应用,并开发出用于动态监测钙依赖性生理和病理过程的更优越的功能方法。