Ali Mohammad S, Kong Fan-Lin, Rollo Alex, Mendez Richard, Kohanim Saady, Smith Daniel Lee, Yang David J
Department of Experimental Diagnostic Imaging, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA.
J Biomed Biotechnol. 2012;2012:828139. doi: 10.1155/2012/828139. Epub 2012 Jun 10.
The nitro group of 2-nitroimidazole (NIM) enters the tumor cells and is bioreductively activated and fixed in the hypoxia cells. 1,4,8,11-tetraazacyclotetradecane (N4) has shown to be a stable chelator for (99m)Tc. The present study was aimed to develop (99m)Tc-cyclam-2-nitroimidazole ((99m)Tc-N4-NIM) for tumor hypoxia imaging. N4-NIM precursor was synthesized by reacting N4-oxalate and 1,3-dibromopropane-NIM, yielded 14% (total synthesis). Cell uptake of (99m)Tc-N4-NIM and (99m)Tc-N4 was obtained in 13762 rat mammary tumor cells and mesothelioma cells in 6-well plates. Tissue distribution of (99m)Tc-N4-NIM was evaluated in breast-tumor-bearing rats at 0.5-4 hrs. Tumor oxygen tension was measured using an oxygen probe. Planar imaging was performed in the tumor-bearing rat and rabbit models. Radiochemical purity of (99m)Tc-N4-NIM was >96% by HPLC. Cell uptake of (99m)Tc-N4-NIM was higher than (99m)Tc-N4 in both cell lines. Biodistribution of (99m)Tc-N4-NIM showed increased tumor-to-blood and tumor-to-muscle count density ratios as a function of time. Oxygen tension in tumor tissue was 6-10 mmHg compared to 40-50 mmHg in normal muscle tissue. Planar imaging studies confirmed that the tumors could be visualized clearly with (99m)Tc-N4-NIM in animal models. Efficient synthesis of N4-NIM was achieved. (99m)Tc-N4-NIM is a novel hypoxic probe and may be useful in evaluating cancer therapy.
2-硝基咪唑(NIM)的硝基进入肿瘤细胞,经生物还原激活后固定于缺氧细胞中。1,4,8,11-四氮杂环十四烷(N4)已被证明是(99m)Tc的一种稳定螯合剂。本研究旨在开发用于肿瘤乏氧显像的(99m)Tc-环胺-2-硝基咪唑((99m)Tc-N4-NIM)。通过使N4-草酸盐与1,3-二溴丙烷-NIM反应合成N4-NIM前体,总合成产率为14%。在6孔板中,于13762大鼠乳腺肿瘤细胞和间皮瘤细胞中获得了(99m)Tc-N4-NIM和(99m)Tc-N4的细胞摄取情况。在荷瘤大鼠中于0.5至4小时评估了(99m)Tc-N4-NIM的组织分布。使用氧探针测量肿瘤氧张力。在荷瘤大鼠和兔模型中进行了平面显像。通过高效液相色谱法测定,(99m)Tc-N4-NIM的放射化学纯度>96%。在两种细胞系中,(99m)Tc-N4-NIM的细胞摄取均高于(99m)Tc-N4。(99m)Tc-N4-NIM的生物分布显示,肿瘤与血液以及肿瘤与肌肉的计数密度比随时间增加。肿瘤组织中的氧张力为6至10 mmHg,而正常肌肉组织中的氧张力为40至50 mmHg。平面显像研究证实,在动物模型中,(99m)Tc-N4-NIM可清晰显示肿瘤。实现了N4-NIM的高效合成。(99m)Tc-N4-NIM是一种新型的乏氧探针,可能有助于评估癌症治疗效果。