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首页> 外文期刊>Nuclear Medicine and Biology >A simple and selective method for the separation of Cu radioisotopes from nickel.
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A simple and selective method for the separation of Cu radioisotopes from nickel.

机译:一种从镍中分离铜放射性同位素的简单选择性方法。

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Separation of copper radioisotopes from a nickel target is normally performed using solvent extraction or anion exchange rather than using cationic exchange. A commonly held opinion is that cationic exchangers have very similar thermodynamic complexation constants for metallic ions with identical charges, therefore making the separation very difficult or impossible. The results presented in this article indicate that the selectivity of Chelex-100 (a cationic ion exchanger) for Cu radioisotope and Ni ions not only depends on the thermodynamic complexation constant in the resin but also markedly varies with the concentration of mobile H+. In our developed method, separation of copper radioisotopes from a nickel target was fulfilled in a column filled with Chelex-100 via controlling the HNO3 concentration of the eluent, and the separation is much more effective, simple and economical in comparison with the common method of anion exchange. For an irradiated nickel target with 650 mg Ni, after separation, the loss of Cu radioisotopes in the nickel portion was reduced from 30% to 0.33% of the total initial radioactivity and the nickel mixed into the radioactive products was reduced from 9.5 to 0.5 mg. This significant improvement will make subsequent labeling much easier and reduce consumption of chelating agents and other chemicals during labeling. If the labeled agent is used in human medical applications, the developed method will significantly decrease the uptake of Ni and chelating agents by patients, therefore reducing both the stress on human body associated with clearing the chemicals from blood and tissue and the risk of various types of acute and chronic disorder due to exposure to Ni.
机译:铜放射性同位素与镍靶的分离通常使用溶剂萃取或阴离子交换而不是阳离子交换进行。普遍认为阳离子交换剂对于具有相同电荷的金属离子具有非常相似的热力学络合常数,因此使分离非常困难或不可能。本文提供的结果表明,Chelex-100(阳离子交换剂)对Cu放射性同位素和Ni离子的选择性不仅取决于树脂中的热力学络合常数,而且还随流动的H +浓度而显着变化。在我们开发的方法中,通过控制洗脱液的HNO3浓度,在装有Chelex-100的色谱柱中完成了从镍靶中分离铜放射性同位素的操作,与常规方法相比,该分离方法更有效,更简单,更经济。阴离子交换。对于具有650 mg Ni的辐照镍靶,分离后,镍部分中Cu放射性同位素的损失从总初始放射性的30%降低到0.33%,混合到放射性产物中的镍从9.5 mg降低到0.5 mg 。这一重大改进将使后续标记变得更加容易,并减少标记过程中螯合剂和其他化学品的消耗。如果标记的药物用于人类医疗应用,那么开发的方法将显着降低患者对镍和螯合剂的吸收,从而减少与清除血液和组织中的化学物质有关的人体压力以及各种类型的风险暴露于镍导致的急性和慢性疾病

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