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冠醚包埋纳米乳液用于从污染溶液中提取铀。

Calixarene-entrapped nanoemulsion for uranium extraction from contaminated solutions.

机构信息

Univ Paris Sud, UMR CNRS 8612, IFR 141-ITFM, Faculté de Pharmacie, Châtenay-Malabry, France.

出版信息

J Pharm Sci. 2010 Mar;99(3):1375-83. doi: 10.1002/jps.21932.

Abstract

Accidental cutaneous contamination by actinides such as uranium occurring to nuclear power plant workers can lead to their dissemination in other tissues and induce severe damages. Until now, no specific emergency treatment for such contamination has been developed. The aim of the present work was to formulate a tricarboxylic calix[6]arene molecule, known to exhibit good affinity and selectivity for complexing uranium, within a topical delivery system for the treatment of skin contamination. Since calixarene was shown to reduce oil/water interfacial tension, we have designed an oil-in-water nanoemulsion, taking advantage of the small droplet size offering a high contact surface with the contaminated aqueous medium. Characterization of the calixarene nanoemulsion was performed by determination of the oily droplet size, zeta potential and pH, measured as a function of the calixarene concentration. The obtained results have confirmed the surface localization of calixarene molecules being potentially available to extract uranyl ions from an aqueous contaminated solution. In a preliminary experiments, the calixarene nanoemulsion was used for the removal of free uranium from an aqueous contaminated solution. Results showed that the calixarene nanoemulsion extracted up to 80 +/- 5% of uranium, which demonstrates the potential interest of this delivery system for uranium skin decontamination.

摘要

核电厂工作人员偶然将钍等放射性核素沾染到皮肤上,可能会导致放射性核素在其他组织中扩散,并引发严重损伤。到目前为止,还没有针对这种污染的特定紧急治疗方法。本工作的目的是在局部给药系统中制备一种三羧酸杯[6]芳烃分子,已知该分子对铀具有良好的亲和力和选择性,用于治疗皮肤污染。由于杯芳烃能够降低油/水界面张力,我们设计了一种油包水纳米乳剂,利用小液滴尺寸提供与受污染水介质的高接触表面积的优势。通过测定油滴尺寸、Zeta 电位和 pH 值,并研究其与杯芳烃浓度的关系,对杯芳烃纳米乳剂进行了表征。所得结果证实了杯芳烃分子的表面定位,它们有可能从受污染的水溶液中提取铀酰离子。在初步实验中,使用杯芳烃纳米乳剂从受污染的水溶液中去除游离铀。结果表明,杯芳烃纳米乳剂最多可提取 80%±5%的铀,这证明了这种给药系统在铀皮肤去污方面的潜在应用价值。

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