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首页> 外文期刊>The Journal of Nuclear Medicine >Technetium-99m labeling and biodistribution of anti-TAC disulfide-stabilized Fv fragment.
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Technetium-99m labeling and biodistribution of anti-TAC disulfide-stabilized Fv fragment.

机译:net 99m标记和抗TAC二硫键稳定的Fv片段的生物分布。

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摘要

We used a preformed 99mTc chelate approach to label a genetically engineered disulfide-bonded Fv fragment of anti-Tac monoclonal antibody (dsFv). The biodistribution of this 99mTc-labeled dsFv was evaluated in athymic mice with IL-2 alpha-receptor-positive ATAC4 tumor xenografts. METHODS: Benzoylmercaptoacetyl-triglycine (BzMAG3) was first labeled with 99mTc, and the carboxy group of 99mTc-MAG3 was then activated to the corresponding tetrafluorophenyl ester. This activated ester was purified with a Sep-Pak C18 column and conjugated to dsFv. The resulting 99mTc-MAG3-dsFv was purified with PD-10 size-exclusion chromatography. The immunoreactivity of 99mTc-MAG3-dsFv was 76% +/- 9%. When incubated in serum at 37 degrees C for 24 hr, there was no appreciable dissociation of 99mTc. The mice were co-injected with 125I-dsFv labeled by the Iodo-Gen method as a control. The mice were killed at 15 to 720 min for analysis of biodistribution and radiocatabolites. RESULTS: The tumor uptake of 99mTc-MAG3-dsFv was similar to that of 125I-dsFv. The tumor uptake of 99mTc-MAG3-dsFv was rapid with tumor-to-blood or tumor-to-organ ratio higher than 1 for all organs except the kidneys. The peak tumor value of 5.1% injected dose per gram was obtained at 45 min, and the tumor-to-organ ratios increased steadily over time; a ratio of 15, 11, 7, 95 and 0.10 resulted at 6 hr for blood, liver, stomach, muscle and kidney. The radioactivity was primarily excreted through kidneys. CONCLUSION: The rapid achievement of high tumor-to-blood and -tissue ratios makes 99mTc-MAG3-dsFv a promising agent for scintigraphic detection of various hematological malignancies that express IL-2 alpha receptors.
机译:我们使用预制的99mTc螯合物方法标记抗Tac单克隆抗体(dsFv)的基因工程二硫键Fv片段。在具有IL-2α受体阳性ATAC4肿瘤异种移植的无胸腺小鼠中评估了这种99mTc标记的dsFv的生物分布。方法:首先用99mTc标记苯甲酰基巯基乙酰基三甘氨酸(BzMAG3),然后将99mTc-MAG3的羧基活化为相应的四氟苯基酯。该活化的酯用Sep-Pak C18柱纯化,并缀合至dsFv。用PD-10尺寸排阻色谱法纯化得到的99mTc-MAG3-dsFv。 99mTc-MAG3-dsFv的免疫反应性为76%+/- 9%。当在37摄氏度的血清中孵育24小时时,没有发现99mTc有明显的解离。小鼠共注射用Iodo-Gen方法标记的125I-dsFv作为对照。在15至720分钟处死小鼠以分析生物分布和放射性代谢产物。结果:99mTc-MAG3-dsFv的肿瘤摄取与125I-dsFv相似。 99mTc-MAG3-dsFv的肿瘤吸收迅速,除肾脏外,所有器官的肿瘤血液或肿瘤器官比率均高于1。在45分钟时,获得了每克5.1%注射剂量的最高肿瘤值,并且肿瘤与器官的比率随时间稳定增长;在6小时时,血液,肝脏,胃,肌肉和肾脏的比率分别为15、11、7、95和0.10。放射性主要通过肾脏排泄。结论:快速实现高的肿瘤对血液和组织的比率使99mTc-MAG3-dsFv成为闪烁体闪烁法检测表达IL-2α受体的各种血液系统恶性肿瘤的有前途的药物。

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