Liu Guozheng, Zhang Surong, He Jiang, Zhu Zhihong, Rusckowski Mary, Hnatowich Donald J
Division of Nuclear Medicine, Department of Radiology, University of Massachusetts Medical School, Worcester, Massachusetts 01655, USA.
Bioconjug Chem. 2002 Jul-Aug;13(4):893-7. doi: 10.1021/bc0255384.
S-Acetyl MAG(3) (S-acetylmercaptoacetyltriglycine) has been used as a chelator for the (99m)Tc labeling of a variety of biomolecules. The objective of this study was to improve upon the labeling of morpholino (MORF), a DNA analogue, as a model biomolecule. A 15mer MORF with a primary amine was conjugated with NHS-MAG(3) in the usual manner, and the MORF-MAG(3) was purified over a P4 column as before. The conjugate was radiolabeled using stannous ion as usual, and the impurities were identified using size exclusion high-performance liquid chromatography (SE HPLC). Various methods were then investigated to remove the impurities. With tartrate as the transchelator, two impurities were identified as labeled MAG(3) and labeled tartrate. The labeled MAG(3) could not be removed by simply repurifying the conjugate using the usual pH 5.2 NH(4)OAc buffer before labeling. However, this impurity could be completely removed if the conjugate was adjusted to pH 7.6 and heated before repurification. The labeled tartrate impurity was removed by heating during labeling. On the basis of these observations, the following procedure for purification of the conjugation mixture and subsequent labeling was adopted. After MORF was conjugated with NHS-MAG(3) and purified over P4 with pH 5.2 NH(4)OAc eluant, the oligomer fractions were combined, adjusted to pH 7.6, and heated in a boiling water bath for 20 min. The conjugated oligomer was then repurified over P4 for storage at refrigerator temperatures. Labeling is achieved simply by adding fresh stannous ion to a solution of the MORF-MAG(3) in pH 7.6 containing tartrate followed by (99m)Tc-pertechnetate. After the mixture is heated for 20 min in boiling water, the labeling efficiency is always over 90% as determined by size exclusion HPLC and paper chromatography and the specific activities can exceed 7 mCi/microg. By making several relatively simple changes to the routine procedure used to conjugate and radiolabel biomolecules with (99m)Tc via MAG(3), a modified procedure was developed that results in labeling efficiency high enough to avoid postlabeling purification.
S-乙酰基MAG(3)(S-乙酰巯基乙酰三甘氨酸)已被用作多种生物分子(99m)Tc标记的螯合剂。本研究的目的是改进作为模型生物分子的吗啉代(MORF,一种DNA类似物)的标记方法。将带有伯胺的15聚体MORF以常规方式与NHS-MAG(3)偶联,并如前所述在P4柱上纯化MORF-MAG(3)。按常规方法使用亚锡离子对偶联物进行放射性标记,并使用尺寸排阻高效液相色谱(SE HPLC)鉴定杂质。然后研究了各种去除杂质的方法。以酒石酸盐作为转螯合剂,鉴定出两种杂质为标记的MAG(3)和标记的酒石酸盐。在标记前,仅通过使用常规的pH 5.2醋酸铵缓冲液对偶联物进行再纯化,无法去除标记的MAG(3)。然而,如果在再纯化前将偶联物调节至pH 7.6并加热,则该杂质可被完全去除。标记的酒石酸盐杂质在标记过程中通过加热去除。基于这些观察结果,采用了以下纯化偶联混合物及后续标记的步骤。MORF与NHS-MAG(3)偶联并用pH 5.2醋酸铵洗脱液在P4柱上纯化后,合并低聚物馏分,调节至pH 7.6,并在沸水浴中加热20分钟。然后将偶联的低聚物在P4柱上再次纯化,以在冰箱温度下储存。只需向pH 7.6含酒石酸盐的MORF-MAG(3)溶液中加入新鲜的亚锡离子,随后加入(99m)锝高锝酸盐即可实现标记。混合物在沸水中加热20分钟后,通过尺寸排阻HPLC和纸色谱法测定标记效率始终超过90%,比活度可超过7 mCi/μg。通过对经由MAG(3)用(99m)Tc偶联和放射性标记生物分子的常规方法进行一些相对简单的改变,开发出一种改进的方法,该方法产生的标记效率足够高,无需进行标记后纯化。