Schibli Roger, Dumas Cécile, Petrig Jeannine, Spadola Loredana, Scapozza Leonardo, Garcia-Garayoa Elisa, Schubiger P August
Center for Radiopharmaceutical Science, ETH-PSI-USZ, Paul Scherrer Institute, 5232 Villigen PSI, Switzerland.
Bioconjug Chem. 2005 Jan-Feb;16(1):105-12. doi: 10.1021/bc049774l.
A series of nine organometallic technetium-99m and rhenium complexes of glucose are presented and characterized in vitro regarding their potential as surrogates of [18F]-2-fluoro-desoxy glucose ([18F]-FDG). The glucose derivatives are functionalized at positions C-1, C-2, C-3, and C-6. Different spacer lengths and chelating systems have been introduced at these sites. For the (radio)labeling, the organometallic precursors [99mTc(H2O)3(CO)3]+ and ReBr3(CO)3 respectively have been used. The resulting complexes have been characterized chemically and radiochemically. The formation of uniform products has been observed on the macroscopic (Re) and no-carrier-added level (99mTc). The Tc-99m complexes revealed good inertness against ligand exchange (Cys and His) and excellent stability in physiological buffered saline as well as in human plasma over a period of 24 h at 37 degrees C. The rhenium complexes have been tested for competitive inhibition of the (yeast) hexokinase. Only for C-2 derivatized glucose complexes with extended spacer functionalities Ki values in the millimolar and sub-millimolar range have been observed. In silico molecular docking experiments supported these experimental findings. However, the competitive inhibitors are not recognized as a pseudosubstrate of hexokinase. The cellular uptake of all 99mTc-complexes into HT-29 colon carcinoma cells via Glut1 was generally low and unspecific independent of the position at the hexose ring, the chelating systems, or the overall charge of the corresponding metal complexes. The current results seem to preclude the use of these compounds as [18F]-FDG surrogates primarily due to the low cellular uptake via Glut1.
本文展示了一系列九种葡萄糖的有机金属锝-99m和铼配合物,并在体外对其作为[18F]-2-氟-脱氧葡萄糖([18F]-FDG)替代物的潜力进行了表征。葡萄糖衍生物在C-1、C-2、C-3和C-6位进行了功能化修饰。在这些位点引入了不同的间隔长度和螯合系统。对于(放射性)标记,分别使用了有机金属前体[99mTc(H2O)3(CO)3]+和ReBr3(CO)3。对所得配合物进行了化学和放射化学表征。在宏观(铼)和无载体添加水平(99mTc)上均观察到形成了均匀的产物。锝-99m配合物对配体交换(半胱氨酸和组氨酸)显示出良好的惰性,并且在37℃下于生理缓冲盐溶液和人血浆中24小时内具有出色的稳定性。对铼配合物进行了酵母己糖激酶竞争性抑制测试。仅对于具有延长间隔功能的C-2衍生葡萄糖配合物,观察到毫摩尔和亚毫摩尔范围内的Ki值。计算机模拟分子对接实验支持了这些实验结果。然而,竞争性抑制剂未被识别为己糖激酶的假底物。所有99mTc配合物通过Glut1进入HT-29结肠癌细胞的细胞摄取通常较低且非特异性,与己糖环上的位置、螯合系统或相应金属配合物的总电荷无关。目前的结果似乎排除了将这些化合物用作[18F]-FDG替代物的可能性,主要原因是通过Glut1的细胞摄取较低。