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生产高比活度锆-89的标准化方法。

Standardized methods for the production of high specific-activity zirconium-89.

作者信息

Holland Jason P, Sheh Yiauchung, Lewis Jason S

机构信息

Memorial Sloan-Kettering Cancer Center, Department of Radiology, New York, NY 10065, USA.

出版信息

Nucl Med Biol. 2009 Oct;36(7):729-39. doi: 10.1016/j.nucmedbio.2009.05.007. Epub 2009 Jul 29.

Abstract

Zirconium-89 is an attractive metallo-radionuclide for use in immuno-PET due to favorable decay characteristics. Standardized methods for the routine production and isolation of high-purity and high-specific-activity (89)Zr using a small cyclotron are reported. Optimized cyclotron conditions reveal high average yields of 1.52+/-0.11 mCi/muA.h at a proton beam energy of 15 MeV and current of 15 muA using a solid, commercially available (89)Y-foil target (0.1 mm, 100% natural abundance). (89)Zr was isolated in high radionuclidic and radiochemical purity (>99.99%) as [(89)Zr]Zr-oxalate by using a solid-phase hydroxamate resin with >99.5% recovery of the radioactivity. The effective specific-activity of (89)Zr was found to be in the range 5.28-13.43 mCi/microg (470-1195 Ci/mmol) of zirconium. New methods for the facile production of [(89)Zr]Zr-chloride are reported. Radiolabeling studies using the trihydroxamate ligand desferrioxamine B (DFO) gave 100% radiochemical yields in <15 min at room temperature, and in vitro stability measurements confirmed that [(89)Zr]Zr-DFO is stable with respect to ligand dissociation in human serum for >7 days. Small-animal positron emission tomography (PET) imaging studies have demonstrated that free (89)Zr(IV) ions administered as [(89)Zr]Zr-chloride accumulate in the liver, whilst [(89)Zr]Zr-DFO is excreted rapidly via the kidneys within <20 min. These results have important implication for the analysis of immuno-PET imaging of (89)Zr-labeled monoclonal antibodies. The detailed methods described can be easily translated to other radiochemistry facilities and will facilitate the use of (89)Zr in both basic science and clinical investigations.

摘要

锆 - 89因其良好的衰变特性,是一种用于免疫正电子发射断层扫描(immuno - PET)的有吸引力的金属放射性核素。本文报道了使用小型回旋加速器常规生产和分离高纯度、高比活度(89)Zr的标准化方法。优化后的回旋加速器条件显示,在质子束能量为15 MeV、电流为15 μA的情况下,使用固态的市售(89)Y箔靶(0.1 mm,100%天然丰度),平均产率高达1.52±0.11 mCi/μA·h。通过使用固相异羟肟酸酯树脂,以[(89)Zr]Zr - 草酸盐形式分离得到的(89)Zr具有高放射性核纯度和放射化学纯度(>99.99%),放射性回收率>99.5%。发现(89)Zr的有效比活度在锆的5.28 - 13.43 mCi/μg(470 - 1195 Ci/mmol)范围内。本文还报道了简便生产[(89)Zr]Zr - 氯化物的新方法。使用三异羟肟酸配体去铁胺B(DFO)进行的放射性标记研究在室温下<15分钟内放射化学产率达100%,体外稳定性测量证实[(89)Zr]Zr - DFO在人血清中对于配体解离在>7天内是稳定的。小动物正电子发射断层扫描(PET)成像研究表明,以[(89)Zr]Zr - 氯化物形式给药的游离(89)Zr(IV)离子在肝脏中蓄积,而[(89)Zr]Zr - DFO在<20分钟内通过肾脏迅速排出。这些结果对于(89)Zr标记单克隆抗体的免疫PET成像分析具有重要意义。所描述的详细方法可以很容易地转化到其他放射化学设施中,并将促进(89)Zr在基础科学和临床研究中的应用。

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