Radiopharmaceuticals Division, Bhabha Atomic Research Centre, Mumbai, India.
Cancer Biother Radiopharm. 2012 Aug;27(6):365-70. doi: 10.1089/cbr.2011.1131. Epub 2012 Jun 12.
Abstract The aim of this work was to determine the potential of (99m)Tc carbonyl-labeled dextran-cysteine-mannose (DCM20) as a mannose receptor targeting agent for sentinel lymph node (SLN) detection using biological in vitro and in vivo assays. (99m)Tc labeling of the previously reported DCM20 ligand was carried out via the (99m)Tc(H(2)O)(3)(CO)(3) synthon. High-performance liquid chromatography (HPLC) showed >99% radiolabeling yield using 50 μg of the ligand. In vitro cell uptake studies performed in RAW 264.7 mouse macrophage precursor cells showed a specific uptake of the preparation. In vivo distribution and scintigraphic imaging were studied in the Wistar rat model. Appreciable uptake and retention of the radiolabeled conjugate was observed in the SLN (4.53%±0.29% at 15 minutes and 3.35%±0.72% at 180 minutes postinjection [p.i.] for 2.5 μg/animal) with a high percentage of popliteal extraction (≥98% at all time points studied), and negligible activity in other nodes as well as blood and nontarget organs. The radiolabeled conjugate also exhibited rapid clearance from the injection site (from ~39.1% clearance at 15 minutes to ~56.5% clearance at 180 minutes p.i.), comparable to current clinically employed agents for SLN detection. These results suggest that [(99m)Tc(CO)(3)]DCM20 could be a potentially useful receptor-based SLN detection agent.
摘要 本研究旨在通过生物体内外实验,确定 (99m)Tc 羰基标记的葡聚糖-半胱氨酸-甘露糖(DCM20)作为用于前哨淋巴结 (SLN) 检测的甘露糖受体靶向剂的潜力。通过 (99m)Tc(H(2)O)(3)(CO)(3) 前体对先前报道的 DCM20 配体进行了 (99m)Tc 标记。高效液相色谱 (HPLC) 显示,使用 50μg 配体时,放射性标记产率>99%。在 RAW 264.7 小鼠巨噬细胞前体细胞中进行的体外细胞摄取研究表明,该制剂具有特异性摄取。在 Wistar 大鼠模型中进行了体内分布和闪烁成像研究。在 SLN 中观察到放射性标记缀合物的摄取和保留(注射后 15 分钟为 4.53%±0.29%,180 分钟为 3.35%±0.72%,每个动物注射 2.5μg),腘窝提取率高(所有研究时间点均≥98%),其他淋巴结以及血液和非靶器官中的活性可忽略不计。放射性标记的缀合物也从注射部位快速清除(从 15 分钟时的约 39.1%清除率到 180 分钟时的约 56.5%清除率),与当前用于 SLN 检测的临床应用制剂相当。这些结果表明,[(99m)Tc(CO)(3)]DCM20 可能是一种潜在有用的基于受体的 SLN 检测剂。