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Poly(ethylene glycol)-alendronate coated nanoparticles for magnetic resonance imaging of lymph nodes

机译:聚(乙二醇) - 用于淋巴结磁共振成像的 - 甘油奖纳米颗粒

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摘要

Nanoparticulate systems can passively target regional lymphatic vessels and lymph nodes (LNs) after interstitial administration. Highly sensitive non-invasive imaging techniques, such as magnetic resonance imaging (MRI), can take advantage from particles' lymphotropic properties to provide a reliable tool to monitor lymphatic function and LN morphology with high spatial resolution. In this work, we developed and characterised a bioerodible nanosystem with MRI contrast properties, based on poly(ethylene glycol)-alendro-nate stabilised gadolinium calcium phosphate nanoparticles (NPs). After foot paw injection in mice, the particles exhibited a distinct pattern of gradual uptake into the local lymphatics and a localised deposition in the popliteal LN. Less variability in the onset of the signal, intensity and localisation was observed compared to the commercially available tracer gadobutrol, suggesting that these NPs could be useful to monitor physiological and dysfunctional lymphatic conditions. Moreover, dissolution of the particles indicated that they would be rapidly cleared from the body after imaging. Nevertheless, our findings call for an improvement of the system that includes reduction of gadolinium leakage from the NPs, and decrease in size of the latter to increase their selective uptake by the LN.
机译:纳米颗粒系统可以在间质施用后被动地靶向区域淋巴管和淋巴结(LNS)。高敏感的非侵入性成像技术,例如磁共振成像(MRI)可以利用颗粒的淋巴细胞性能,以提供具有高空间分辨率的淋巴功能和LN形态的可靠工具。在这项工作中,我们开发并表征了具有MRI对比度的生物侵蚀纳米系统,基于聚(乙二醇) - alendro-nate稳定的磷酸钙纳米粒子(NPS)。在小鼠中脚爪注射后,颗粒表现出不同的逐渐吸收模式,进入局部淋巴管和poplitealln中的局部沉积。与商业上可获得的示踪性卡替洛尔相比,观察到信号发作,强度和定位的变化较小,表明这些NP可用于监测生理和功能失调的淋巴条件。此外,颗粒的溶解表明,在成像后它们将从体中快速清除。尽管如此,我们的研究结果要求改善包括从NPS减少钆泄漏的系统,并且减少后者的大小,以增加其LN的选择性摄取。

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