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用于99m锝标记DNA的NHS-MAG3的制备与使用。

Preparation and use of NHS-MAG3 for technetium-99m labeling of DNA.

作者信息

Winnard P, Chang F, Rusckowski M, Mardirossian G, Hnatowich D J

机构信息

Department of Nuclear Medicine, University of Massachusetts Medical Center, Worcester 01655, USA.

出版信息

Nucl Med Biol. 1997 Jul;24(5):425-32. doi: 10.1016/s0969-8051(97)00027-9.

Abstract

The chelator mercaptoacetylglycylglycylglycine (MAG3) is on of several amidothiols that have been used successfully to radiolabeled proteins and other molecules with 99mTc. Prior to radiolabeling, the sulfur in these amidothiols is usually protected by a benzoyl group (i.e. S-benzoyl MAG3) which requires extreme alkaline pH or boiling water temperatures for rapid deprotection. As a result, the benzoyl-protected chelator is radiolabeled prior to conjugation (i.e. preconjugation labeling) in the case of carriers such as proteins or polypeptides which cannot withstand harsh conditions. We have employed a simple, two-step, synthesis of the N-hydroxysuccinimide ester of MAG3 in which the sulfur is protected with an acetyl group (i.e. S-acetyl NHS-MAG3). A single-stranded amine-derivitized DNA was coupled with NHS-S-acetyl MAG3. Radiolabeling was accomplished at room temperature and neutral pH by transchelation from 99mTc-tartrate. In comparison to labeled SHNH-DNA, the labeled MAG3-DNA was unstable to cysteine transchelation, however, in contrast to SHNH-DNA, no evidence for serum protein binding of the labeled MAG3-DNA was observed. We conclude that the S-acetyl NHS MAG3 bifunctional chelator may prove to be an attractive alternative method of radiolabeling DNA and other biologically important molecules with 99mTc.

摘要

螯合剂巯基乙酰甘氨酰甘氨酰甘氨酸(MAG3)是几种氨硫醇之一,已成功用于用99mTc对蛋白质和其他分子进行放射性标记。在进行放射性标记之前,这些氨硫醇中的硫通常由苯甲酰基保护(即S-苯甲酰基MAG3),这需要极端的碱性pH值或沸水温度才能快速脱保护。因此,对于诸如蛋白质或多肽等无法承受苛刻条件的载体,在偶联之前(即预偶联标记)对苯甲酰基保护的螯合剂进行放射性标记。我们采用了一种简单的两步法合成MAG3的N-羟基琥珀酰亚胺酯,其中硫用乙酰基保护(即S-乙酰基NHS-MAG3)。单链胺衍生化的DNA与NHS-S-乙酰基MAG3偶联。通过从99mTc-酒石酸盐进行转螯合,在室温及中性pH条件下完成放射性标记。与标记的SHNH-DNA相比,标记的MAG3-DNA对半胱氨酸转螯合不稳定,然而,与SHNH-DNA不同,未观察到标记的MAG3-DNA与血清蛋白结合的确切证据。我们得出结论,S-乙酰基NHS MAG3双功能螯合剂可能被证明是一种用99mTc对DNA和其他生物学重要分子进行放射性标记的有吸引力的替代方法。

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