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单克隆抗体的直接99mTc标记:放射性标记与体外稳定性

Direct 99mTc labeling of monoclonal antibodies: radiolabeling and in vitro stability.

作者信息

Garron J Y, Moinereau M, Pasqualini R, Saccavini J C

机构信息

CIS bio international Compagnie ORIS Industrie, Department of Biomedical Imaging Applications, Gif-sur-Yvette, France.

出版信息

Int J Rad Appl Instrum B. 1991;18(7):695-703. doi: 10.1016/0883-2897(91)90007-8.

Abstract

Direct labeling involves 99mTc binding to different donor groups on the protein, giving multiple binding sites of various affinities resulting in an in vivo instability. The stability has been considerably improved by activating the antibody using a controlled reduction reaction (using 2-aminoethanethiol). This reaction generates sulfhydryl groups, which are known to strongly bind 99mTc. The direct 99mTc antibody labeling method was explored using whole antibodies and fragments. Analytical methods were developed for routine evaluation of radiolabeling yield and in vitro stability. Stable direct antibody labeling with 99mTc requires the generation of sulfhydryl groups, which show high affinity binding sites for 99mTc. Such groups are obtained with 2-aminoethanethiol (AET), which induces the reduction of the intrachain or interchain disulfide bond, with no structural deterioration or any loss of immunobiological activity of the antibody. The development of fast, reliable analytical methods has made possible the qualitative and quantitative assessment of technetium species generated by the radiolabeling process. Labeling stability is determined by competition of the 99mTc-antibody bond with three ligands, Chelex 100 (a metal chelate-type resin), free DTPA solution and 1% HSA solution. Very good 99mTc-antibody stability is obtained with activated IgG (IgGa) and Fab' fragment, which makes these substances possible candidates for immunoscintigraphy use.

摘要

直接标记涉及99mTc与蛋白质上不同的供体基团结合,产生具有各种亲和力的多个结合位点,导致体内不稳定。通过使用受控还原反应(使用2-氨基乙硫醇)激活抗体,稳定性得到了显著提高。该反应产生巯基,已知其能强烈结合99mTc。使用完整抗体和片段探索了直接99mTc抗体标记方法。开发了用于放射性标记产率和体外稳定性常规评估的分析方法。用99mTc进行稳定的直接抗体标记需要产生巯基,其对99mTc显示出高亲和力结合位点。通过2-氨基乙硫醇(AET)可获得此类基团,它能诱导链内或链间二硫键的还原,而不会导致抗体的结构破坏或免疫生物学活性的任何丧失。快速、可靠的分析方法的发展使得对放射性标记过程中产生的锝物种进行定性和定量评估成为可能。标记稳定性由99mTc-抗体键与三种配体(螯合树脂Chelex 100、游离二乙三胺五乙酸溶液和1%人血清白蛋白溶液)的竞争决定。用活化的IgG(IgGa)和Fab'片段可获得非常好的99mTc-抗体稳定性,这使得这些物质有可能成为免疫闪烁显像的候选物。

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