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环胺的2-硝基咪唑衍生物的合成、放射性标记及其作为肿瘤缺氧阳性标志物的临床前评价。

The synthesis and radiolabeling of 2-nitroimidazole derivatives of cyclam and their preclinical evaluation as positive markers of tumor hypoxia.

作者信息

Engelhardt Edward L, Schneider Richard F, Seeholzer Steven H, Stobbe Corinne C, Chapman J Donald

机构信息

Department of Radiation Oncology, Fox Chase Cancer Center, Philadelphia, Pennsylvania 19111, USA.

出版信息

J Nucl Med. 2002 Jun;43(6):837-50.

Abstract

UNLABELLED

The cyclam ligand (1,4,8,11-tetraazacyclotetradecane) was condensed with various azomycin-containing synthons to produce chemical compounds that could chelate radioactive metals. It was expected that these radiolabeled markers would become bound selectively to hypoxic cells on the bioreduction of their azomycin substituent.

METHODS

The markers were radiolabeled with (99m)Tc, (67)Cu, or (64)Cu. Their uptake and binding to tumor cells in vitro was characterized as a function of time and oxygen concentration. These data defined the hypoxia-specific factor, the ratio of the initial rate of marker binding to severely hypoxic relative to aerobic cells. In addition, the concentration of oxygen (in the equilibrium gas phase) that inhibited binding to 50% of the maximum rate was determined. The in vivo biodistribution and clearance kinetics of the favorable markers were investigated with severe combined immune deficiency mice bearing EMT-6 tumors whose radiobiologic hypoxic fraction (RHF) was approximately 40%. The specific activity (percentage injected dose per gram [%ID/g]) in normal and tumor tissue and the tumor-to-blood and tumor-to-muscle ratios of the optimal markers were also measured for Dunning prostate carcinomas of anaplastic (RHF = 15%-20%) and well-differentiated (RHF < 1%) histology growing in Fischer X Copenhagen rats. Planar images were acquired with some markers from these tumor-bearing rats.

RESULTS

The tumor uptake of these cyclam-based markers is approximately 10 times higher when they are labeled with copper isotopes than when labeled with (99m)Tc. FC-327 and FC-334, di-azomycin-substituted cyclams, exhibited hypoxia-specific factors > or = 7.0. The oxygen concentration that inhibited their binding to 50% of the maximal rate was approximately 0.5% O(2), similar to that of the radiobiologic oxygen effect. The %ID/g of (64)Cu-FC-334 retained in EMT-6 tumors in mice and in the anaplastic and well-differentiated prostate tumors in rats 6 h after administration was approximately 6.5, 0.4, and 0.1, respectively. Marker activity in tumor was always less than that in liver and kidney. The tumor-to-blood and tumor-to-muscle ratios of (64)Cu-FC-327 and (64)Cu-FC-334 activity in R3327-AT tumor-bearing rats are higher than those observed for (64)Cu-di-acetyl-bis (N(4)-methylthiosemicarbazone) and approach those of beta-D-(125)I-iodinated azomycin galactopyranoside, the optimal hypoxia marker of the azomycin-nucleoside class.

CONCLUSION

These data suggest that some azomycin-cyclams exhibit good hypoxia-marking potential to tumor cells in vitro and to animal tumors of known RHF. Both PET and SPECT could be used to image tumor hypoxia with markers labeled with (64)Cu and (67)Cu, respectively.

摘要

未标记

将环胺配体(1,4,8,11 - 四氮杂环十四烷)与各种含偶氮霉素的合成子缩合,以制备能够螯合放射性金属的化合物。预计这些放射性标记物在其偶氮霉素取代基发生生物还原时会选择性地与缺氧细胞结合。

方法

这些标记物用(99m)Tc、(67)Cu或(64)Cu进行放射性标记。其在体外对肿瘤细胞的摄取和结合情况被表征为时间和氧浓度的函数。这些数据确定了缺氧特异性因子,即标记物与严重缺氧细胞相对于有氧细胞的初始结合速率之比。此外,还测定了抑制结合至最大速率50%时的氧浓度(在平衡气相中)。用患有EMT - 6肿瘤的严重联合免疫缺陷小鼠研究了优良标记物的体内生物分布和清除动力学,其放射生物学缺氧分数(RHF)约为40%。还测量了在Fischer×Copenhagen大鼠中生长的间变性(RHF = 15% - 20%)和高分化(RHF < 1%)组织学的Dunning前列腺癌中正常组织和肿瘤组织中的比活度(每克注射剂量的百分比[%ID/g])以及最佳标记物的肿瘤与血液和肿瘤与肌肉的比率。用这些荷瘤大鼠的一些标记物采集了平面图像。

结果

当用铜同位素标记时,这些基于环胺的标记物的肿瘤摄取量比用(99m)Tc标记时高约10倍。二偶氮霉素取代的环胺FC - 327和FC - 334表现出缺氧特异性因子≥7.0。抑制其结合至最大速率50%时的氧浓度约为0.5% O₂,与放射生物学氧效应的氧浓度相似。给药6小时后,小鼠EMT - 6肿瘤以及大鼠间变性和高分化前列腺肿瘤中保留的(64)Cu - FC - 334的%ID/g分别约为6.5、0.4和0.1。肿瘤中的标记物活性始终低于肝脏和肾脏中的活性。在荷R3327 - AT肿瘤的大鼠中,(64)Cu - FC - 327和(64)Cu - FC - 334活性的肿瘤与血液和肿瘤与肌肉的比率高于(64)Cu - 二乙酰双(N(4) - 甲基硫代半卡巴腙)观察到的比率,并接近β - D - (125)I - 碘化偶氮霉素吡喃半乳糖苷(偶氮霉素核苷类的最佳缺氧标记物)的比率。

结论

这些数据表明,一些偶氮霉素 - 环胺在体外对肿瘤细胞以及对已知RHF的动物肿瘤表现出良好的缺氧标记潜力。PET和SPECT均可分别用于用(64)Cu和(67)Cu标记的标记物对肿瘤缺氧进行成像。

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