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自主溶剂萃取系统的开发,以从溶解的回旋加速器轰击的铋靶中分离出砹-211。

Development of an autonomous solvent extraction system to isolate astatine-211 from dissolved cyclotron bombarded bismuth targets.

机构信息

Nuclear Sciences Division, Pacific Northwest National Laboratory, 902 Battelle Blvd., PO Box 999, Richland, WA, 99352, USA.

Department of Radiation Oncology, University of Washington, 616 N.E. Northlake Place, PO Box 355016, Seattle, WA, 98105, USA.

出版信息

Sci Rep. 2019 Dec 30;9(1):20318. doi: 10.1038/s41598-019-56272-7.

Abstract

Cyclotron-produced astatine-211 (At) shows tremendous promise in targeted alpha therapy (TAT) applications due to its attractive half-life and its 100% α-emission from nearly simultaneous branched alpha decay. Astatine-211 is produced by alpha beam bombardment of naturally monoisotopic bismuth metal (Bi) via the (α, 2n) reaction. In order to isolate the small mass of At (specific activity = 76 GBq·µg) from several grams of acid-dissolved Bi metal, a manual milliliter-scale solvent extraction process using diisopropyl ether (DIPE) is routinely performed at the University of Washington. As this process is complex and time consuming, we have developed a fluidic workstation that can perform the method autonomously. The workstation employs two pumps to concurrently deliver the aqueous and organic phases to a mixing tee and in-line phase mixer. The mixed phases are routed to a phase settling reservoir, where they gravity settle. Finally, each respective phase is withdrawn into its respective pump. However, development of a phase boundary sensor, placed in tandem with the phase settling reservoir, was necessary to communicate to the system when withdrawal of the denser aqueous phase was complete (i.e., the intersection of the two phases was located). The development and optimization of the autonomous solvent extraction system is described, and the At yields from several ~1.1 GBq-level At processing runs are reported.

摘要

回旋加速器生产的砹-211(At)由于其吸引人的半衰期和几乎同时发生的分支α衰变产生 100%的α发射,在靶向α治疗(TAT)应用中显示出巨大的潜力。At 通过α束轰击天然单同位素铋金属(Bi)通过(α,2n)反应产生。为了从几克酸溶解的铋金属中分离出少量的 At(比活度 = 76GBq·µg),华盛顿大学通常在手动毫升规模溶剂萃取过程中使用二异丙醚(DIPE)。由于这个过程复杂且耗时,我们已经开发了一种可以自动执行该方法的流体工作站。该工作站使用两个泵将水相和有机相同时输送到混合三通和在线相混合器中。混合相被路由到相沉降储液器,在那里它们自然沉降。最后,每个相应的相都被撤回到其各自的泵中。然而,为了与相沉降储液器串联放置相界传感器,以通知系统何时完成更密集的水相的提取(即,两相的交点)是必要的。描述了自动溶剂萃取系统的开发和优化,并报告了几个~1.1GBq 级 At 处理运行的 At 产率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6944/6937302/87059343aeb2/41598_2019_56272_Fig1_HTML.jpg

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