首页> 外文会议>Trends in Radiopharmaceuticals(ISTR-2005) >Labeling of thymidine with 99mTc-carbonyl and in-vivobiodistribution studies
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Labeling of thymidine with 99mTc-carbonyl and in-vivobiodistribution studies

机译:用99mTc-羰基标记胸腺嘧啶核苷和体内生物分布研究

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摘要

Labeled thymidine is used for tumor imaging, since it is incorporated into DNA and thereforernprovides a measure of cell proliferation. For the current study thymidine was functionalized at the C5'position ofrnthe sugar moiety with the tridentate iminodiacetic acid chelator for complexation and radiolabeling withrn99mTc(I)-tricarbonyl core. The aim of this study was the labeling of thymidine analogue with 99mTc-tricarbonylrntechnique, and the exploration of its potential as radiopharmaceutical in-vivo. Methods: The preparation of thern99mTc-precursor consisted in flushing the mixture of sodium carbonate, sodium borohydride and sodiumpotassiumrntartrate tetrahydrate with CO gas during 60 min. Pertechnetate was added and the vial was heated forrn35 min at 75 oC. The reaction was stopped in ice bath, and pH was adjusted to 7. Then 50 μL of the precursorrnwas added to 10-4 M of the ligand and heated again for 60 min at 75 oC. Radiochemical purity of the precursorrnand the product was checked by HPLC, TLC and paper chromatography. Biodistribution studies were performedrnin normal Swiss mice and also in breast-cancer-bearing Sprague-Dawley rats. Results: Yield of the 99mTc(CO)3rn+rnwas 98.3 ± 0.8%. Radiochemical purity of the [99mTc(CO)3]-thymidine analog was 97.3 ± 0.4%. Biodistributionrnstudies in normal mice showed the highest uptake by intestine, followed by liver and kidneys. Biodistributionrnstudies in tumor-bearing rats showed a higher uptake in the kidney than in the liver, probably because thesernanimals were anesthetized. Tumor/blood and tumor/muscle ratios were 0.77 and 2.55 respectively. Uptake byrnthe tumor was 0.18 ± 0.02 %ID/g. Conclusions: Preparation of the 99mTc-precursor and labeling of thymidinernwere achieved with very high yield. Uptake by the breast-tumor-bearing rats was low. Other tumor models andrnlabeling techniques should be used to permit better results.
机译:标记的胸腺嘧啶核苷可用于肿瘤成像,因为它被掺入DNA中,因此可提供细胞增殖的量度。在本研究中,胸苷在糖部分的C5'位被三齿亚氨基二乙酸螯合剂官能化,用于络合和放射性标记99mTc(I)-三羰基核心。这项研究的目的是用99mTc-三羰基技术标记胸苷类似物,并探索其作为放射性药物体内的潜力。方法:99mTc前体的制备方法是在60分钟内用碳酸钠气体冲洗碳酸钠,硼氢化钠和酒石酸钾钠四水合物的混合物。加入高tech酸酯,并将小瓶在75 oC加热35分钟。在冰浴中终止反应,并将pH调节至7。然后将50μL的前体加入到10-4M的配体中,并再次在75℃下加热60分钟。通过HPLC,TLC和纸色谱检查前体和产物的放射化学纯度。在正常的瑞士小鼠中以及在患有乳腺癌的Sprague-Dawley大鼠中进行了生物分布研究。结果:99mTc(CO)3rn + rn的产率为98.3±0.8%。 [99mTc(CO)3]-胸苷类似物的放射化学纯度为97.3±0.4%。正常小鼠的生物分布研究显示肠道吸收最高,其次是肝脏和肾脏。荷瘤大鼠的生物分布研究表明,肾脏摄取量高于肝脏摄取量,这可能是因为麻醉了动物的动物。肿瘤/血液和肿瘤/肌肉的比率分别为0.77和2.55。肿瘤的摄取为0.18±0.02%ID / g。结论:99mTc前体的制备和胸苷的标记获得了很高的产率。荷瘤大鼠的摄取较低。应使用其他肿瘤模型和标记技术以取得更好的结果。

著录项

  • 来源
  • 会议地点 Vienna(AT)
  • 作者单位

    Radiopharmacy Center,rnInstitute of Energetic and Nuclear Research,rnS?o Paulo, SP, Brazil;

    rnRadiopharmacy Center,rnInstitute of Energetic and Nuclear Research,rnS?o Paulo, SP, Brazil;

    rnRadiopharmacy Center,rnInstitute of Energetic and Nuclear Research,rnS?o Paulo, SP, Brazil;

    rnDepartment of Gynecology – Medical Investigation Laboratory,rnS?o Paulo University Medical School,rnS?o Paulo, SP, Brazil;

    rnCenter for Radiopharmaceutical Science,rnPaul Scherrer Institute,rnVilligen, Switzerland;

    rnCenter for Radiopharmaceutical Science,rnPaul Scherrer Institute,rnVilligen, Switzerland;

    rnCenter for Radiopharmaceutical Science,rnPaul Scherrer Institute,rnVilligen, Switzerland;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 放射医学;
  • 关键词

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