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液体萃取在放射性同位素纯化方面的应用观点。

Perspectives on the Use of Liquid Extraction for Radioisotope Purification.

机构信息

Department of Morphology, Surgery and Experimental Medicine, University of Ferrara, Via Luigi Borsari, 46-44121 Ferrara, Italy.

Legnaro National Laboratories, Italian National Institute for Nuclear Physics (LNL-INFN), Viale dell'Università, 2, 35020 Legnaro (PD), Italy.

出版信息

Molecules. 2019 Jan 18;24(2):334. doi: 10.3390/molecules24020334.

Abstract

The reliable and efficient production of radioisotopes for diagnosis and therapy is becoming an increasingly important capability, due to their demonstrated utility in Nuclear Medicine applications. Starting from the first processes involving the separation of Tc from irradiated materials, several methods and concepts have been developed to selectively extract the radioisotopes of interest. Even though the initial methods were based on liquid-liquid extraction (LLE) approaches, the perceived difficulty in automating such processes has slowly moved the focus towards resin separation methods, whose basic chemical principles are often similar to the LLE ones in terms of chelators and phases. However, the emerging field of flow chemistry allows LLE to be easily automated and operated in a continuous manner, resulting in an even improved efficiency and reliability. In this contribution, we will outline the fundamentals of LLE processes and their translation into flow-based apparatuses; in addition, we will provide examples of radioisotope separations that have been achieved using LLE methods. This article is intended to offer insights about the future potential of LLE to purify medically relevant radioisotopes.

摘要

可靠且高效的放射性同位素生产对于诊断和治疗变得越来越重要,因为它们在核医学应用中已经被证明具有实用性。从最初涉及从辐照材料中分离 Tc 的过程开始,已经开发了几种方法和概念来选择性地提取感兴趣的放射性同位素。尽管最初的方法基于液-液萃取 (LLE) 方法,但由于认为难以实现这些过程的自动化,因此人们的注意力逐渐转向树脂分离方法,这些方法的基本化学原理在螯合剂和相方面通常与 LLE 相似。然而,新兴的流动化学领域使得 LLE 能够轻松实现自动化并以连续的方式运行,从而提高了效率和可靠性。在本文中,我们将概述 LLE 过程的基本原理及其转化为基于流动的设备;此外,我们将提供使用 LLE 方法实现的放射性同位素分离的示例。本文旨在提供关于 LLE 用于纯化与医学相关的放射性同位素的未来潜力的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87ac/6359044/6482db11016b/molecules-24-00334-g001.jpg

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