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Determination Modeling and Evaluation of Kinetics of 223Ra Sorption on Hydroxyapatite and Titanium Dioxide Nanoparticles

机译:羟基磷灰石和二氧化钛纳米粒子吸附223 Ra的动力学测定建模和评价

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摘要

Sorption kinetics of radium on hydroxyapatite and titanium dioxide nanomaterials were studied. The main aim of the current study was to determine the rate-controlling process and the corresponding kinetic model, due to the application of studied nanomaterials as α-emitters’ carriers, and to assess the sorption properties of both materials from the radiopharmaceutical point of view by time regulated sorption experiments on the nanoparticles. Radium-223 was investigated as radionuclide used in targeted alpha particle therapy as an in vivo generator. It was found that the controlling process of the Ra sorption kinetics was the diffusion in a reacted layer. Therefore, parameters like particle size, their specific surface area, contact time and temperature played important role. Moreover, the composition of liquid phase, such as pH, the concentration of Ra, ionic strength, the presence of complexation ligands, etc., had to be considered. Experiments were conducted under free air conditions and at pH 8 for hydroxyapatite and pH 6 for titanium dioxide in Britton–Robinson buffer. Initial Ra concentration was in the range from 10 to 10 mol/L. It was found that sorption kinetics was very fast (more than 90% in the first hour) in the case of both nanomaterials, so they can be directly used for efficient radium sorption.
机译:研究了镭在羟基磷灰石和二氧化钛纳米材料上的吸附动力学。当前研究的主要目的是确定速率控制过程和相应的动力学模型,这是由于已研究的纳米材料作为α-发射体的载体,并从放射性药物的角度评估了两种材料的吸附性能。通过时间调节的纳米颗粒吸附实验。镭223作为放射性核素进行了研究,用于体内的α靶向靶向粒子治疗。发现Ra吸附动力学的控制过程是在反应层中的扩散。因此,诸如粒度,其比表面积,接触时间和温度之类的参数起着重要作用。此外,必须考虑液相的组成,例如pH,Ra的浓度,离子强度,络合配体的存在等。实验是在自由空气条件下,在Britton-Robinson缓冲液中,羟基磷灰石的pH值为8,二氧化钛的pH值为6。最初的Ra浓度在10至10 mol / L的范围内。已经发现,对于两种纳米材料而言,吸附动力学都非常快(在第一小时内超过90%),因此它们可以直接用于有效的镭吸附。

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