首页> 美国卫生研究院文献>International Journal of Nanomedicine >Synthesis and evaluation of nanoglobule-cystamine-(Gd-DO3A) a biodegradable nanosized magnetic resonance contrast agent for dynamic contrast-enhanced magnetic resonance urography
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Synthesis and evaluation of nanoglobule-cystamine-(Gd-DO3A) a biodegradable nanosized magnetic resonance contrast agent for dynamic contrast-enhanced magnetic resonance urography

机译:纳米球-胱胺-(Gd-DO3A)的合成和评价一种可动态降解的动态磁共振造影技术可生物降解的纳米级磁共振造影剂

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摘要

Dynamic contrast-enhanced magnetic resonance imaging has been recently shown to be effective for diagnostic urography. High-resolution urographic images can be acquired with T1 contrast agents for the kidney and urinary tract with minimal noise in the abdomen. Currently, clinical contrast agents are low molecular weight agents and can rapidly extravasate from blood circulation, leading to slow contrast agent elimination through kidney and consequently providing limited contrast enhancement in urinary tract. In this study, a new biodegradable macromolecular contrast agent, nanoglobule-G4-cystamine-(Gd-DO3A), was prepared by conjugating Gd-DO3A chelates on the surface of a generation 4 nanoglobule, poly-l-lysine octa(3-aminopropyl)silsesquioxane dendrimer, via a disulfide spacer, where the carrier had a precisely defined nanosize that is far smaller than the renal filtration threshold. The in vivo contrast enhancement and dynamic imaging of the urinary tract of the agent was evaluated in nude mice using a low molecular weight agent Gd(DTPA-BMA) as a control. The agent eliminated rapidly from blood circulation and accumulated more abundantly in urinary tract than Gd(DTPA-BMA). The fast elimination kinetics is ideal for functional evaluation of the kidneys. The morphology of the kidneys and urinary tract was better visualized by the biodegradable nanoglobular contrast agent than Gd(DTPA-BMA). The agent also resulted in low liver contrast enhancement, indicating low nonspecific tissue deposition. These features render the G4 nanoglobule-cystamine-(Gd-DO3A) conjugate a promising contrast agent for magnetic resonance urography.
机译:动态造影增强磁共振成像近来已被证明对于诊断尿路造影是有效的。可以使用T1造影剂获取肾脏和泌尿道的高分辨率尿路造影图像,而腹部的噪声最小。当前,临床造影剂是低分子量试剂,并且可以迅速地从血液循环中渗出,从而导致缓慢的造影剂通过肾脏消除,因此在泌尿道中提供有限的造影剂增强作用。在这项研究中,通过将Gd-DO3A螯合物缀合在第4代纳米球的表面上,制备了一种新的可生物降解的大分子造影剂,G4-胱胺-(Gd-DO3A),聚-1-赖氨酸八(3-氨基丙基)倍半硅氧烷树状大分子,通过二硫键间隔物,其中载体具有精确定义的纳米尺寸,远远小于肾脏滤过阈值。使用低分子量药物Gd(DTPA-BMA)作为对照,在裸鼠中评估了该药物的体内对比度增强和尿路动态成像。该药物从血液循环中迅速消除,并在尿道中比Gd(DTPA-BMA)积累更多。快速消除动力学是肾脏功能评估的理想选择。可生物降解的纳米球造影剂比Gd(DTPA-BMA)更好地显示了肾脏和泌尿道的形态。该药物还导致肝脏造影剂增强低,表明非特异性组织沉积低。这些特征使G4纳米球-胱胺-(Gd-DO3A)缀合物成为磁共振尿路造影的有希望的造影剂。

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