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基于SnO2的68Ge/68Ga发生器的特性以及DOTA肽放射性标记的相关方面。

Characteristics of SnO2-based 68Ge/68Ga generator and aspects of radiolabelling DOTA-peptides.

作者信息

de Blois Erik, Sze Chan Ho, Naidoo Clive, Prince Deidre, Krenning Eric P, Breeman Wouter A P

机构信息

Department of Nuclear Medicine, Erasmus MC Rotterdam, Rotterdam, The Netherlands.

出版信息

Appl Radiat Isot. 2011 Feb;69(2):308-15. doi: 10.1016/j.apradiso.2010.11.015. Epub 2010 Nov 23.

Abstract

OBJECTIVES

PET scintigraphy with (68)Ga-labelled analogs is of increasing interest in Nuclear Medicine and performed all over the world. Here we report the characteristics of the eluate of SnO(2)-based (68)Ge/(68)Ga generators prepared by iThemba LABS (Somerset West, South Africa). Three purification and concentration techniques of the eluate for labelling DOTA-TATE and concordant SPE purifications were investigated.

METHODS

Characteristics of 4 SnO(2)-based generators (range 0.4-1 GBq (68)Ga in the eluate) and several concentration techniques of the eluate (HCl) were evaluated. The elution profiles of SnO(2)-based (68)Ge/(68)Ga generators were monitored, while [HCl] of the eluens was varied from 0.3-1.0 M. Metal ions and sterility of the eluate were determined by ICP. Fractionated elution and concentration of the (68)Ga eluate were performed using anion and cation exchange. Concentrated (68)Ga eluate, using all three concentration techniques, was used for labelling of DOTA-TATE. (68)Ga-DOTA-TATE-containing solution was purified and RNP increased by SPE, therefore also 11 commercially available SPE columns were investigated.

RESULTS

The amount of elutable (68)Ga activity varies when the concentration of the eluens, HCl, was varied, while (68)Ge activity remains virtually constant. SnO(2)-based (68)Ge/(68)Ga generator elutes at 0.6 M HCl >100% of the (68)Ga activity at calibration time and ±75% after 300 days. Eluate at discharge was sterile and Endotoxins were <0.5 EU/mL, RNP was always <0.01%. Metal ions in the eluate were <10 ppm (in total). Highest desorption for anion purification was obtained with the 30 mg Oasis WAX column (>80%). Highest desorption for cation purification was obtained using a solution containing 90% acetone at increasing molarity of HCl, resulted in a (68)Ga desorption of 68±8%. With all (68)Ge/(68)Ga generators and for all 3 purification methods a SA up to 50 MBq/nmol with >95% incorporation (ITLC) and RCP (radiochemical purity) by HPLC ±90% could be achieved. Purification and concentration of the eluate with anion exchange has the benefit of more elutable (68)Ga with 1 M HCl as eluens. The additional washing step of the anion column with NaCl and ethanol, resulted in a lower and less variable [H(+)] in the eluate, and, as a result the pH in the reaction vial is better controlled, more constant, and less addition of buffer is required and concordant smaller reaction volumes. Desorption of (68)Ga-DOTA-TATE of SPE columns varied, highest desorption was obtained with Baker C(18) 100 mg (84%). Purification of (68)Ga-DOTA-TATE by SPE resulted in an RNP of <10(-4)%.

CONCLUSIONS

Eluate of SnO(2)-based (68)Ge/(68)Ga generator, either by fractionated elution as by ion exchange can be used for labelling DOTA-peptides with (68)Ga at a SA of 50 MBq/nmol at >95% incorporation and a RCP of ±90%. SPE columns are very effective to increase RNP.

摘要

目的

使用(68)Ga标记类似物的PET闪烁扫描在核医学领域越来越受到关注,并且在全球范围内开展。在此,我们报告了由iThemba LABS(南非萨默塞特韦斯特)制备的基于SnO₂的(68)Ge/(68)Ga发生器洗脱液的特性。研究了用于标记DOTA-TATE的洗脱液的三种纯化和浓缩技术以及相应的固相萃取(SPE)纯化方法。

方法

评估了4个基于SnO₂的发生器(洗脱液中(68)Ga活度范围为0.4 - 1GBq)以及洗脱液(HCl)的几种浓缩技术。监测基于SnO₂的(68)Ge/(68)Ga发生器的洗脱曲线,同时洗脱液的[HCl]在0.3 - 1.0M之间变化。通过电感耦合等离子体质谱(ICP)测定洗脱液中的金属离子和无菌性。使用阴离子和阳离子交换进行(68)Ga洗脱液的分步洗脱和浓缩。使用所有三种浓缩技术得到的浓缩(68)Ga洗脱液用于标记DOTA-TATE。对含有(68)Ga-DOTA-TATE的溶液进行纯化,并通过SPE提高放射化学纯度(RNP),因此还研究了11种市售的SPE柱。

结果

当洗脱液HCl的浓度变化时,可洗脱的(68)Ga活度量会改变,而(68)Ge活度基本保持恒定。基于SnO₂的(68)Ge/(68)Ga发生器在0.6M HCl时洗脱,在校准时间洗脱(68)Ga活度的>100%,300天后洗脱±75%。排放时的洗脱液无菌,内毒素<0.5 EU/mL,RNP始终<0.01%。洗脱液中的金属离子<10 ppm(总量)。使用30mg Oasis WAX柱进行阴离子纯化时获得最高解吸率(>80%)。使用含90%丙酮且HCl摩尔浓度递增的溶液进行阳离子纯化时获得最高解吸率,(68)Ga解吸率为68±8%。对于所有(68)Ge/(68)Ga发生器和所有3种纯化方法,可实现比活度高达50 MBq/nmol,标记率>95%(薄层色谱法(ITLC)),高效液相色谱法(HPLC)测定的放射化学纯度(RCP)±90%。使用阴离子交换对洗脱液进行纯化和浓缩的优点是,以1M HCl作为洗脱液时可洗脱更多的(68)Ga。用NaCl和乙醇对阴离子柱进行额外洗涤步骤,使洗脱液中[H⁺]更低且变化更小,因此反应瓶中的pH得到更好控制,更稳定,所需缓冲液添加量更少,相应地反应体积更小。SPE柱对(68)Ga-DOTA-TATE的解吸率各不相同,使用Baker C18 100mg柱时获得最高解吸率(84%)。通过SPE纯化(68)Ga-DOTA-TATE导致RNP<10⁻⁴%。

结论

基于SnO₂的(68)Ge/(68)Ga发生器的洗脱液,无论是通过分步洗脱还是离子交换,均可用于用(68)Ga标记DOTA肽,比活度为50 MBq/nmol,标记率>95%,RCP±90%。SPE柱在提高RNP方面非常有效。

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