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首页> 外文期刊>Journal of vascular and interventional radiology: JVIR >Effect of stabilized iodized oil emulsion on experimentally induced hepatocellular carcinoma in rats.
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Effect of stabilized iodized oil emulsion on experimentally induced hepatocellular carcinoma in rats.

机译:稳定的碘化油乳剂对大鼠实验性肝细胞癌的影响。

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PURPOSE: Previous studies have shown that the use of Lipiodol UltraFluid (LUF) emulsified with water leads to an increase in the tumoral uptake of iodine I 131-labeled LUF and reduced pulmonary uptake. Although emulsions containing LUF are currently used for chemoembolization of hepatocellular carcinomas (HCCs), this approach is impossible with intraarterial radiation therapy (RT) because of the problems of radiation protection linked to instability of the emulsions. The aims of this study were to develop stabilized emulsions of radiolabeled LUF of different particle sizes and viscosities and to study its biodistribution in rats with HCC. MATERIALS AND METHODS: An emulsifier made of polyethylene glycol and hydrogenated castor oil was used to stabilize emulsions containing water and technetium Tc 99m-labeled Super Six Sulfur LUF. The various emulsions were injected in the hepatic arteries of rats with HCC. Twenty-four hours after injection, the rats were killed and the liver, tumor, and lungs were removed to perform ex-vivo gamma-counting to quantify tumoral, hepatic, and pulmonary uptake. RESULTS: Emulsions of oil in water and water in oil of different viscosities (0.68-1.06 Pa.S) and particle size distributions (21-45 mum) were prepared and kept stable for more than 24 hours. Whatever the type of emulsion, the observed effect on tumoral uptake was the opposite of that expected. Indeed, a decrease in tumoral activity was observed (P < .05 in three of five cases) and a tendency toward increased pulmonary activity was observed (P < .05 in two of five cases) rather than any significant decrease. CONCLUSIONS: This study made it possible to develop emulsions of radiolabeled iodized oil that remain stable for more than 24 hours. However, studies of biodistribution in rats with HCC failed to demonstrate any improvement in tumoral targeting, but rather showed a decrease in tumoral uptake that renders this approach impractical for intraarterial radiolabeled iodized oil RT as well as for intraarterial iodized oil chemoembolization. These results may possibly be explained by the use of an emulsifier containing lipophilic and hydrophilic components that modify the properties of LUF.
机译:目的:以前的研究表明,用水乳化的碘油超流体(LUF)会导致碘I 131标记的LUF的肿瘤吸收增加,并减少肺部吸收。尽管目前将含有LUF的乳剂用于肝细胞癌(HCC)的化学栓塞,但由于乳剂的不稳定与放射防护有关,因此在动脉内放射治疗(RT)中这种方法是不可能的。这项研究的目的是开发不同粒径和粘度的放射性标记LUF的稳定乳剂,并研究其在HCC大鼠中的生物分布。材料与方法:使用由聚乙二醇和氢化蓖麻油制成的乳化剂稳定含有水和tech Tc 99m标记的超级六硫LUF的乳液。将各种乳剂注射到患有HCC的大鼠的肝动脉中。注射后二十四小时,将大鼠处死并取出肝脏,肿瘤和肺,进行离体γ计数,以量化肿瘤,肝和肺的摄取。结果:制备了不同粘度(0.68-1.06 Pa.S)和粒度分布(21-45微米)的水包油和水包油乳液,并保持稳定超过24小时。无论使用哪种乳剂,观察到的对肿瘤吸收的影响均与预期相反。确实,观察到肿瘤活性降低(在五分之三的病例中,P <0.05),并且观察到肺活量增加的趋势(在五分之二的P中,<0.05),而不是任何明显的降低。结论:这项研究使开发放射性标记的碘化油的乳状液成为可能,该乳状液可在超过24小时内保持稳定。但是,对HCC大鼠的生物分布研究未能证明其肿瘤靶向性有任何改善,而是显示了肿瘤吸收的减少,从而使该方法对于动脉内放射性标记的碘油RT和动脉内碘化油的化学栓塞是不切实际的。这些结果可能通过使用包含改变LUF特性的亲脂性和亲水性成分的乳化剂来解释。

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