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Tumor-induced lymph node alterations detected by MRI lymphography using gadolinium nanoparticles

机译:使用nanoparticles纳米颗粒通过MRI淋巴摄影术检测到的肿瘤诱导的淋巴结改变

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Contrast-enhanced MRI lymphography shows potential to identify alterations in lymph drainage through lymph nodes (LNs) in cancer and other diseases. MRI studies have typically used low molecular weight gadolinium contrast agents, however larger gadolinium-loaded nanoparticles possess characteristics that could improve the specificity and sensitivity of lymphography. The performance of three gadolinium contrast agents with different sizes and properties was compared by 3T MRI after subcutaneous injection. Mice bearing B16-F10 melanoma footpad tumors were imaged to assess tumor-induced alterations in lymph drainage through tumor-draining popliteal and inguinal LNs versus contralateral uninvolved drainage. Gadolinium lipid nanoparticles were able to identify tumor-induced alterations in contrast agent drainage into the popliteal LN, while lower molecular weight or albumin-binding gadolinium agents were less effective. All of the contrast agents distributed in foci around the cortex and medulla of tumor-draining popliteal LNs, while they were restricted to the cortex of non-draining LNs. Surprisingly, second-tier tumor-draining inguinal LNs exhibited reduced uptake, indicating that tumors can also divert LN drainage. These characteristics of tumor-induced lymph drainage could be useful for diagnosis of LN pathology in cancer and other diseases. The preferential uptake of nanoparticle contrasts into tumor-draining LNs could also allow selective targeting of therapies to tumor-draining LNs.
机译:对比增强的MRI淋巴造影显示出潜力,可以识别癌症和其他疾病中通过淋巴结(LN)引起的淋巴引流的改变。 MRI研究通常使用低分子量的contrast造影剂,但是较大的g负载纳米颗粒具有可以改善淋巴照相术的特异性和敏感性的特性。皮下注射后,通过3T MRI比较了三种不同大小和性质的ado造影剂的性能。对患有B16-F10黑色素瘤足垫肿瘤的小鼠进行成像,以评估肿瘤引流的pop,腹股沟LNs与对侧无累及引流的淋巴引流变化。 lipid脂质纳米颗粒能够确定肿瘤诱导的造影剂排入L神经LN的改变,而较低分子量或结合白蛋白的g试剂效果较差。所有造影剂均分布在引流肿瘤的L神经LN皮质和髓质周围的病灶中,而它们仅限于不引流LN的皮质。出人意料的是,第二级引流腹股沟LNs吸收减少,表明肿瘤也可以转移LN引流。肿瘤诱发的淋巴引流的这些特征可用于诊断癌症和其他疾病中的LN病理。优先将纳米粒子造影剂吸收到引流肿瘤的LN中也可以使疗法选择性靶向引流肿瘤的LN。

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