首页> 美国卫生研究院文献>Drug Metabolism and Disposition >Clearance and Biodistribution of Liposomally Encapsulated Nitroxides: A Model for Targeted Delivery of Electron Paramagnetic Resonance Imaging Probes to Tumors
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Clearance and Biodistribution of Liposomally Encapsulated Nitroxides: A Model for Targeted Delivery of Electron Paramagnetic Resonance Imaging Probes to Tumors

机译:脂质体包裹的一氧化氮的清除率和生物分布:一种模型的电子顺磁共振成像探针靶向输送到肿瘤。

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摘要

Electron paramagnetic resonance (EPR) imaging using nitroxides as molecular probes is potentially a powerful tool for the detection and physiological characterization of micrometastatic lesions. Encapsulating nitroxides in anti-HER2 immunoliposomes at high concentrations to take advantage of the “self-quenching” phenomenon of nitroxides allows generation of robust EPR signals in HER2-overexpressing breast tumor cells with minimal background from indifferent tissues or circulating liposomes. We investigated the in vivo pharmacological properties of nitroxides encapsulated in sterically stabilized liposomes designed for long circulation times. We show that circulation times of nitroxides can be extended from hours to days; this increases the proportion of liposomes in circulation to enhance tumor targeting. Furthermore, nitroxides encapsulated in sterically stabilized anti-HER2 immunoliposomes can be delivered to HER2-overexpressing tumors at micromolar concentrations, which should be imageable by EPR. Lastly, after in vivo administration, liposomally encapsulated nitroxide signal also appears in the liver, spleen, and kidneys. Although these organs are spatially distinct and would not hinder tumor imaging in our model, understanding nitroxide signal retention in these organs is essential for further improvements in EPR imaging contrast between tumors and other tissues. These results lay the foundation to use liposomally delivered nitroxides and EPR imaging to visualize tumor cells in vivo.
机译:使用氮氧化物作为分子探针的电子顺磁共振(EPR)成像可能是检测和鉴定微转移病变的强大工具。以高浓度将硝酸盐包裹在抗HER2免疫脂质体中,以利用硝酸盐的“自猝灭”现象,可在过分表达HER2的乳腺肿瘤细胞中产生稳定的EPR信号,而来自无关组织或循环脂质体的背景极少。我们研究了设计用于长循环时间的空间稳定脂质体中包裹的一氧化氮的体内药理特性。我们表明,一氧化氮的循环时间可以从数小时延长到数天。这增加了脂质体在循环中的比例,以增强肿瘤靶向性。此外,封装在空间稳定的抗HER2免疫脂质体中的氮氧化物可以微摩尔浓度递送至过表达HER2的肿瘤,应通过EPR进行成像。最后,在体内给药后,脂质体包裹的一氧化氮信号也出现在肝脏,脾脏和肾脏中。尽管这些器官在空间上是不同的,并且在我们的模型中不会妨碍肿瘤成像,但是了解这些器官中的氮氧化物信号保留对于进一步改善肿瘤与其他组织之间的EPR成像对比度至关重要。这些结果为使用脂质体递送的一氧化氮和EPR成像为体内肿瘤细胞的可视化奠定了基础。

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