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Strongly Magnetic Iron Nanoparticles Improve the Diagnosis of Small Tumours in the Reticuloendothelial System by Magnetic Resonance Imaging

机译:强磁性铁纳米颗粒通过磁共振成像改善网状内皮系统中小肿瘤的诊断

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摘要

Despite advances in non-invasive medical imaging, accurate nodal staging of malignancy continues to rely on surgery. Superparamagnetic iron oxide nanoparticles (IONP) with lymphotropic qualities have shown some promise as contrast agents for MRI of the lymph nodes, but recent large-scale studies failed to show consistent detection of tumours below 5 mm. Herein we compare imaging of splenic and lymph node tissue using iron/iron oxide core/shell nanoparticles (Fe NP) that have superior magnetic qualities to IONP, to determine whether improved negative contrast in T2-weighted MRI can enhance the diagnosis of small tumours in the reticuloendothelial system. To provide an in vivo pre-clinical model of human lymph node micrometastases, breast cancer cells were injected into the spleens of mice, providing localised areas of tumour growth. MR images of groups of tumour-bearing and sham-treated animals were generated using a 1.5 T imaging system and analysed by two independent, blinded radiologists. Fe NP improved the sensitivity and specificity of MRI when compared to IONP, enabling accurate detection of tumours as small as 1–3 mm. The use of Fe NP as contrast agents have the potential to improve the diagnostic accuracy of MRI in cancer patients, leading to more rapid and effective treatment.
机译:尽管在非侵入性医学成像方面取得了进步,但恶性肿瘤的准确分期仍依赖手术。具有淋巴功能的超顺磁性氧化铁纳米颗粒(IONP)已显示出作为MRI淋巴结造影剂的希望,但是最近的大规模研究未能显示出一致检测出5 mm以下的肿瘤。在这里,我们比较使用具有优于IONP磁性的铁质/铁氧化物核/壳纳米粒子(Fe NP)对脾和淋巴结组织的成像,以确定在T2加权MRI中改善的阴性对比度是否可以增强对小肿瘤的诊断。网状内皮系统。为了提供人淋巴结微转移的临床前临床模型,将乳腺癌细胞注射到小鼠脾脏中,提供了肿瘤生长的局部区域。使用1.5 T成像系统生成了一组荷瘤和假手术动物的MR图像,并由两名独立的盲放射科医生进行了分析。与IONP相比,Fe NP可以提高MRI的敏感性和特异性,从而可以精确检测到1至3 mm的肿瘤。 Fe NP作为造影剂的使用有可能提高癌症患者MRI的诊断准确性,从而导致更快速和有效的治疗。

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