一种用于制备68Ga标记肽的全自动合成方法。
A fully automated synthesis for the preparation of 68Ga-labelled peptides.
作者信息
Decristoforo Clemens, Knopp Roger, von Guggenberg Elisabeth, Rupprich Marco, Dreger Thorsten, Hess Andre, Virgolini Irene, Haubner Roland
机构信息
Clinical Department of Nuclear Medicine, Medical University Innsbruck, Austria.
出版信息
Nucl Med Commun. 2007 Nov;28(11):870-5. doi: 10.1097/MNM.0b013e3282f1753d.
BACKGROUND
Generator-produced Ga has attracted increasing interest for radiolabelling peptides used in PET applications. So far, the synthesis of Ga-peptide radiopharmaceuticals is mainly based on semi-automated systems. Here we describe a fully automated approach for the synthesis of Ga-labelled peptides.
METHOD
A commercially available Ga generator was eluted with 0.1 mol . l HCl. Reaction parameters such as buffer conditions, pH range, reaction temperature and time, volume of reaction solution and generator fraction were optimized for labelling DOTA-Tyr-octreotide (DOTATOC). Reaction yields, pH, radiochemical purity, sterility, endotoxins, breakthrough of Ge and final Ge content were determined. A fully automated radiopharmaceutical synthesis device based on a modular concept for remote-controlled processing was developed and evaluated for a number of DOTA-derivatized peptides.
RESULTS
DOTATOC could be labelled in almost quantitative yields by heating 10-50 nmol peptide at pH 3.5-4.0 for 5 min at 95 degrees C in 1.5 ml. Purification using a reversed-phase cartridge was required to avoid any potential Ge breakthrough: final activities of Ge were below 100 Bq . ml. Automated synthesis resulted in overall decay-corrected reaction yields of about 60% within 10 min. Even after 1 year using a 1110 MBq generator more than 130 MBq Ga-DOTATOC could be obtained. Moreover, it was demonstrated that a variety of DOTA-derivatized peptides can be labelled using identical reaction conditions with high yields.
CONCLUSION
The system described allows the fully automated, efficient and rapid preparation of Ga-DOTA-derivatized peptides. It has been used successfully and reliably for routine preparations in clinical studies.
背景
发生器生产的镓在用于正电子发射断层扫描(PET)应用的放射性标记肽方面引起了越来越多的关注。到目前为止,镓标记肽放射性药物的合成主要基于半自动系统。在此,我们描述一种用于合成镓标记肽的全自动方法。
方法
用0.1 mol·l盐酸洗脱市售的镓发生器。针对标记DOTA - 酪氨酸 - 奥曲肽(DOTATOC),对诸如缓冲液条件、pH范围、反应温度和时间、反应溶液体积以及发生器馏分等反应参数进行了优化。测定了反应产率、pH值、放射化学纯度、无菌性、内毒素、锗的突破情况以及最终的锗含量。开发了一种基于模块化概念用于远程控制处理的全自动放射性药物合成装置,并对多种DOTA衍生肽进行了评估。
结果
通过在95℃下将10 - 50 nmol肽在pH 3.5 - 4.0下于1.5 ml中加热5分钟,DOTATOC可以几乎定量的产率进行标记。需要使用反相柱进行纯化以避免任何潜在的锗突破:最终锗的活度低于100 Bq/ml。自动化合成在10分钟内导致总体衰变校正反应产率约为60%。即使使用1110 MBq的发生器1年后,仍可获得超过130 MBq的镓 - DOTATOC。此外,已证明在相同反应条件下,多种DOTA衍生肽可以高产率进行标记。
结论
所描述的系统允许全自动、高效且快速地制备镓 - DOTA衍生肽。它已成功且可靠地用于临床研究中的常规制备。