首页> 外文期刊>Molecular imaging and biology: MIB : the official publication of the Academy of Molecular Imaging >Tumor uptake of hollow gold nanospheres after intravenous and intra-arterial injection: PET/CT study in a rabbit VX2 liver cancer model
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Tumor uptake of hollow gold nanospheres after intravenous and intra-arterial injection: PET/CT study in a rabbit VX2 liver cancer model

机译:静脉内和动脉内注射后空心金纳米球的肿瘤吸收:兔VX2肝癌模型中的PET / CT研究

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Purpose: This study was designed to investigate the intratumoral uptake of hollow gold nanospheres (HAuNS) after hepatic intra-arterial (IA) and intravenous (IV) injection in a liver tumor model. Materials and methods: Fifteen VX2 tumor-bearing rabbits were randomized into five groups (n = 3 in each group) that received either IV 64Cu-labeled PEG-HAuNS (IV-PEG-HAuNS), IA 64Cu-labeled PEG-HAuNS (IA-PEG-HAuNS), IV cyclic peptide (RGD)-conjugated 64Cu-labeled PEG-HAuNS (IV-RGD-PEG-HAuNS), IA RGD-conjugated 64Cu-labeled PEG-HAuNS (IA-RGD-PEG-HAuNS), or IA 64Cu-labeled PEG-HAuNS with lipiodol (IA-PEG-HAuNS-lipiodol). The animals underwent PET/CT 1 h after injection, and uptake expressed as percentage of injected dose per gram of tissue (%ID/g) was measured in tumor and major organs. The animals were euthanized 24 h after injection, and tissues were evaluated for radioactivity. Results: At 1 h after injection, animals in the IA-PEG-HAuNS-lipiodol group showed significantly higher tumor uptake (P 0.001) and higher ratios of tumor-to-normal liver uptake (P 0.001) than those in all other groups. The biodistribution of radioactivity 24 h after injection showed that IA delivery of PEG-HAuNS with lipiodol resulted in the highest tumor uptake (0.33 %ID/g; P 0.001) and tumor-to-normal liver ratio (P 0.001) among all delivery methods. At 24 h, the IA-RGD-PEG-HAuNS group showed higher tumor uptake than the IA-PEG-HAuNS group (0.20 vs. 0.099 %ID/g; P 0.001). Conclusion: Adding iodized oil to IA-PEG-HAuNS maximizes nanoparticle delivery to hepatic tumors and therefore may be useful in targeted chemotherapy and photoablative therapy. PET/CT can be used to noninvasively monitor the biodistribution of radiolabeled HAuNS after IV or IA injection.
机译:目的:本研究旨在研究肝肿瘤模型中肝动脉内(IA)和静脉内(IV)注射后空心金纳米球(HAuNS)的肿瘤内摄取。材料和方法:将十五只VX2荷瘤兔随机分为五组(每组n = 3),分别接受IV 64Cu标记的PEG-HAuNS(IV-PEG-HAuNS),IA 64Cu标记的PEG-HAuNS(IA -PEG-HAuNS),IV环肽(RGD)结合的64Cu标记的PEG-HAuNS(IV-RGD-PEG-HAuNS),IA RGD结合的64Cu标记的PEG-HAuNS(IA-RGD-PEG-HAuNS),或IA 64Cu标记的带有碘油的PEG-HAuNS(IA-PEG-HAuNS-碘油)。注射后1小时对动物进行PET / CT,并测量肿瘤和主要器官中摄取量,表示为每克组织注射剂量的百分比(%ID / g)。注射后24小时对动物实施安乐死,并评估组织的放射性。结果:注射后1小时,IA-PEG-HAuNS-碘油组的动物比其他所有动物具有更高的肿瘤吸收率(P <0.001)和肿瘤与正常肝吸收率的比率(P <0.001)组。注射后24 h放射性的生物分布表明,在所有情况下IA传递PEG-HAuNS和碘油可导致最高的肿瘤吸收(0.33%ID / g; P <0.001)和肿瘤与正常肝之比(P <0.001)投放方式。在24小时时,IA-RGD-PEG-HAuNS组的肿瘤摄取高于IA-PEG-HAuNS组(0.20对0.099%ID / g; P <0.001)。结论:在IA-PEG-HAuNS中添加碘化油可最大程度地将纳米颗粒递送至肝肿瘤,因此可用于靶向化学疗法和光切除疗法。 PET / CT可用于无创监测IV或IA注射后放射性标记的HAuNS的生物分布。

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