Université Paris-Sud, CNRS UMR 8612, Physico-chimie - Pharmacotechnie - Biopharmacie, Châtenay-Malabry, F-92296, France.
Int J Pharm. 2010 Oct 15;398(1-2):179-84. doi: 10.1016/j.ijpharm.2010.07.016. Epub 2010 Jul 22.
This work aims to evaluate the efficiency of a calixarene emulsion for uranium extraction from a contaminated solution prior to apply such a delivery system to uranium skin decontamination. For this purpose, various experimental parameters that can influence the efficiency of the calixarene emulsion on uranium extraction were determined. The results show that the calixarene nanoemulsion effect can be observed after a very short time of contact with uranium-contaminated solution (5 min) and that it is still efficient in case of small volumes of contaminated solution. The pH of the contaminated solution was found to be the most important parameter affecting the calixarene nanoemulsion efficiency with a dramatic reduction of the uranium extraction rate in case of acidification of the contaminated medium. This lack of efficiency can be overcome by buffering the nanoemulsion continuous phase. The obtained results reveal that the calixarene nanoemulsion could represent a promising system for the emergency treatment of uranium cutaneous contamination.
这项工作旨在评估杯芳烃乳液从污染溶液中提取铀的效率,以便将这种输送系统应用于铀皮肤去污。为此,确定了各种可能影响杯芳烃乳液对铀萃取效率的实验参数。结果表明,杯芳烃纳米乳液与含铀污染溶液接触很短时间(5 分钟)后即可观察到效果,而且在污染溶液体积较小的情况下仍具有高效性。发现污染溶液的 pH 值是影响杯芳烃纳米乳液效率的最重要参数,在污染介质酸化的情况下,铀萃取率显著降低。通过缓冲纳米乳液连续相可以克服这种低效性。所得结果表明,杯芳烃纳米乳液可能是一种很有前途的铀皮肤污染紧急处理系统。