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Gold Nanoparticles as Boron Carriers for Boron Neutron Capture Therapy: Synthesis Radiolabelling and In Vivo Evaluation

机译:金纳米粒子作为硼中子俘获治疗的硼载体:合成放射性标记和体内评价。

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摘要

: Boron Neutron Capture Therapy (BNCT) is a binary approach to cancer therapy that requires accumulation of boron atoms preferentially in tumour cells. This can be achieved by using nanoparticles as boron carriers and taking advantage of the enhanced permeability and retention (EPR) effect. Here, we present the preparation and characterization of size and shape-tuned gold NPs (AuNPs) stabilised with polyethylene glycol (PEG) and functionalized with the boron-rich anion cobalt (dicarbollide), commonly known as COSAN. The resulting NPs were radiolabelled with I both at the core and the shell, and were evaluated in vivo in a mouse model of human fibrosarcoma (HT1080 cells) using positron emission tomography (PET). : The thiolated COSAN derivatives for subsequent attachment to the gold surface were synthesized by reaction of COSAN with tetrahydropyran (THP) followed by ring opening using potassium thioacetate (KSAc). Iodination on one of the boron atoms of the cluster was also carried out to enable subsequent radiolabelling of the boron cage. AuNPs grafted with mPEG-SH (5 Kda) and thiolated COSAN were prepared by ligand displacement. Radiolabelling was carried out both at the shell (isotopic exchange) and at the core (anionic absorption) of the NPs using I to enable PET imaging. : Stable gold nanoparticles simultaneously functionalised with PEG and COSAN (PEG-AuNPs@[ ] ) with hydrodynamic diameter of 37.8 ± 0.5 nm, core diameter of 19.2 ± 1.4 nm and ξ-potential of −18.0 ± 0.7 mV were obtained. The presence of the COSAN on the surface of the NPs was confirmed by Raman Spectroscopy and UV-Vis spectrophotometry. PEG-AuNPs@[ ] could be efficiently labelled with I both at the core and the shell. Biodistribution studies in a xenograft mouse model of human fibrosarcoma showed major accumulation in liver, lungs and spleen, and poor accumulation in the tumour. The dual labelling approach confirmed the in vivo stability of the PEG-AuNPs@[ ] . : PEG stabilized, COSAN-functionalised AuNPs could be synthesized, radiolabelled and evaluated in vivo using PET. The low tumour accumulation in the animal model assayed points to the need of tuning the size and geometry of the gold core for future studies.
机译:硼中子俘获疗法(BNCT)是癌症治疗的一种二元方法,需要硼原子优先在肿瘤细胞中蓄积。这可以通过使用纳米粒子作为硼载体并利用增强的磁导率和保留(EPR)效果来实现。在这里,我们介绍了制备和表征的大小和形状调整的金纳米粒子(AuNPs),用聚乙二醇(PEG)稳定并用富含硼的阴离子钴(dicarbollide)(通常称为COSAN)进行功能化。所得的NP在核和壳上均用I进行放射性标记,并使用正电子发射断层扫描(PET)在人纤维肉瘤(HT1080细胞)的小鼠模型中进行体内评估。 :通过使COSAN与四氢吡喃(THP)反应,然后使用硫代乙酸钾(KSAc)开环来合成随后附着至金表面的硫醇化COSAN衍生物。还对簇中的硼原子之一进行了碘化,以使随后对硼笼进行放射性标记。通过配体置换制备了接枝了mPEG-SH(5 Kda)和硫醇化COSAN的AuNP。使用I使PET成像在NP的壳层(同位素交换)和核心(阴离子吸收)处进行放射性标记。 :获得了同时用PEG和COSAN功能化的稳定金纳米颗粒(PEG-AuNPs @ []),其流体动力学直径为37.8±0.5 nm,核心直径为19.2±1.4 nm,ξ电位为-18.0±0.7 mV。通过拉曼光谱和紫外可见分光光度法确认了在纳米颗粒表面上存在COSAN。 PEG-AuNPs @ []可以在核和壳上都被有效标记为I。在人纤维肉瘤的异种移植小鼠模型中的生物分布研究显示,肝脏,肺和脾脏中主要积累,肿瘤中的积累不佳。双重标记方法证实了PEG-AuNPs @ []的体内稳定性。 :可以使用PET在体内进行PEG稳定,COSAN官能化的AuNP的合成,放射性标记和评估。在所分析的动物模型中低的肿瘤蓄积性表明需要调整金核的大小和几何形状,以用于将来的研究。

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