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首页> 外文期刊>ACS nano >Magnetic Particle Imaging for Highly Sensitive, Quantitative, and Safe in Vivo Gut Bleed Detection in a Murine Model
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Magnetic Particle Imaging for Highly Sensitive, Quantitative, and Safe in Vivo Gut Bleed Detection in a Murine Model

机译:磁颗粒成像用于高敏感,定量和安全的小鼠模型中的体内肠道漏血检测

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Gastrointestinal (GI) bleeding causes more than 300 000 hospitalizations per year in the United States. Imaging plays a crucial role in accurately locating the source of the bleed for timely intervention. Magnetic particle imaging (MPI) is an emerging clinically translatable imaging modality that images superparamagnetic iron-oxide (SPIO) tracers with extraordinary contrast and sensitivity. This linearly quantitative modality has zero background tissue signal and zero signal depth attenuation. MPI is also safe: there is zero ionizing radiation exposure to the patient and clinically approved tracers can be used with MPI. In this study, we demonstrate the use of MPI along with long-circulating, PEG-stabilized SPIOs for rapid in vivo detection and quantification of GI bleed. A mouse model genetically predisposed to GI polyp development (Apc(Min/+)) was used for this study, and heparin was used as an anticoagulant to induce acute GI bleeding. We then injected MPI-tailored, long-circulating SPIOs through the tail vein, and tracked the tracer biodistribution over time using our custom-built high resolution field-free line (FFL) MPI scanner. Dynamic MPI projection images captured tracer accumulation in the lower GI tract with excellent contrast. Quantitative analysis of the MPI images show that the mice experienced GI bleed rates between 1 and 5 mu L/min. Although there are currently no human scale MPI systems, and MPI-tailored SPIOs need to undergo further development and evaluation, clinical translation of the technique is achievable. The robust contrast, sensitivity, safety, ability to image anywhere in the body, along with long-circulating SPIOs lends MPI outstanding promise as a clinical diagnostic tool for GI bleeding.
机译:胃肠道(GI)出血导致美国每年有超过300 000家住院治疗。成像在准确定位流血源以及时干预时起着至关重要的作用。磁性粒子成像(MPI)是一种新出现的临床翻译成像模型,其具有具有非凡对比和敏感性的超顺磁性铁(SPIO)示踪剂。这种线性定量模态具有零背景组织信号和零信号深度衰减。 MPI也是安全的:患者有零电离辐射暴露,临床认可的示踪剂可以与MPI一起使用。在这项研究中,我们证明了MPI以及长循环的PEG稳定的分子用于快速检测和定量Gi流血的定量。将遗传到Gi息肉发育的小鼠模型(APC(min / +))用于本研究,并且使用肝素作为抗凝血剂以诱导急性GI出血。然后,我们通过尾静脉注入MPI定制,长循环的Spios,并使用我们的定制高分辨率免现场线(FFL)MPI扫描仪随着时间的推移跟踪示踪性生物分布。动态MPI投影图像捕获了较低的GI道中的示踪剂积累,具有优异的对比度。对MPI图像的定量分析表明,小鼠经历了1至5μl/ min之间的GI渗流速率。虽然目前没有人类规模的MPI系统,但MPI定制的SPIO需要进行进一步的开发和评估,但该技术的临床翻译是可实现的。鲁棒对比,灵敏度,安全性,在身体的任何地方进行图像的能力,以及长循环的鞘族利用MPI杰出的承诺作为Gi出血的临床诊断工具。

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