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锆的压制固体靶生产及其在抗体标记中的应用。

Pressed Solid Target Production of Zr and its Application for Antibody Labelling.

作者信息

Shrivastav Anjli, Maurya Sonu, Dixit Manish, Kumari Sarita, Gambhir Sanjay

机构信息

Department of Nuclear Medicine, Sanjay Gandhi Postgraduate Institute of Medical Sciences, Rai-Berali Road, Lucknow, 226014, India.

出版信息

Curr Radiopharm. 2025;18(2):120-130. doi: 10.2174/0118744710318544240715061530.

Abstract

OBJECTIVES

Zirconium-89 (Zr, t=3.27d) is an important emitting radionuclide used in Positron Emission Tomography (PET) immuno studies due to its unique characteristics and increased demand due to simple and cost-effective production capacity. Production of Zr is achieved primarily through solid natural yttrium targets via different target preparation methodologies, such as electrodeposition, pressed foils, and spark plasma sintering. In this study, we have investigated the pressed solid target methodology.

METHODS

The Yttrium Oxide (YO) powder was pressed to pellet form and stacked over a different back support plate, such as platinum (Pt), niobium (Nb), and tantalum (Ta). The target was irradiated with approximately 12 MeV proton beam for 10-60 minutes at 20μA current. The irradiated target was purified through a solid phase extraction method via hydroxamate-based resin by manual or automatic approach. The purified Zr was analyzed using gamma scintigraphy, and specific activity was calculated through Deferoxamine (DFO) chelation.

RESULTS

Zr radionuclide via pressed target was effectively produced with a production yield of 20-30 MBq/μA.h, and the purification was achieved in 35 minutes with (87.46)% average recovery and >98% purity while using automated purification, but manual purification took 2 hours with (91 ± 2)% recovery and >98% purity. The production yield was comparable to the reported pressed target approach. Deferoxamine chelation with Zr-oxalate was performed with purity >98% and specific activity of 25-30 μCi/mmol.

CONCLUSION

In this study, we explored the production of Zr by pressed targets and purification via manual or automated methods with good radionuclide purity. The chelation with DFO or its analog was performed with good labeling efficiency and stability.

摘要

目标

锆 - 89(Zr,半衰期t = 3.27天)是一种重要的发射放射性核素,因其独特的特性而用于正电子发射断层扫描(PET)免疫研究,并且由于其生产过程简单且成本效益高,需求不断增加。Zr的生产主要通过不同的靶材制备方法,如电沉积、压制箔和放电等离子烧结,以天然钇固体靶材来实现。在本研究中,我们对压制固体靶材方法进行了研究。

方法

将氧化钇(YO)粉末压制成丸粒形式,并堆叠在不同的背支撑板上,如铂(Pt)、铌(Nb)和钽(Ta)。用约12 MeV的质子束在20μA电流下照射靶材10 - 60分钟。通过基于异羟肟酸酯的树脂,采用手动或自动方法,通过固相萃取法对辐照后的靶材进行纯化。使用γ闪烁扫描法分析纯化后的Zr,并通过去铁胺(DFO)螯合计算比活度。

结果

通过压制靶材有效地生产出了Zr放射性核素,产率为20 - 30 MBq/μA·h,采用自动纯化时,35分钟内实现了纯化,平均回收率为(87.46)%,纯度>98%,而手动纯化需要2小时,回收率为(91±2)%,纯度>98%。产率与报道的压制靶材方法相当。Zr - 草酸盐与去铁胺的螯合纯度>98%,比活度为25 - 30μCi/mmol。

结论

在本研究中,我们探索了通过压制靶材生产Zr并通过手动或自动方法进行纯化,获得了具有良好放射性核素纯度的产品。与DFO或其类似物的螯合具有良好的标记效率和稳定性。

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