Chong Hyun-Soon, Chen Yunwei, Kang Chi Soo, Sun Xiang, Wu Ningjie
Chemistry Division, Department of Biological and Chemical Sciences, Illinois Institute of Technology, 3101 S. Dearborn St., LS 182, Chicago, IL 60616, United States.
Chemistry Division, Department of Biological and Chemical Sciences, Illinois Institute of Technology, 3101 S. Dearborn St., LS 182, Chicago, IL 60616, United States.
Bioorg Med Chem Lett. 2015 Mar 1;25(5):1082-5. doi: 10.1016/j.bmcl.2015.01.008. Epub 2015 Jan 12.
A promising bifunctional chelate (N-NE3TA) was conjugated to bile acids, cholic acid (CA), deoxycholic acid (DCA), and chenodeoxycholic acid (CDCA) as tumor targeting vectors. Bile acid conjugates of N-NE3TA (CA-N-NE3TA, DCA-N-NE3TA, and CDCA-N-NE3TA) were comparatively evaluated for complexation with (64)Cu, an imaging probe for positron emission tomography (PET). N-NE3TA-bile acid conjugates were evaluated for radiolabeling kinetics with (64)Cu, and the corresponding (64)Cu-radiolabeled conjugates were screened for complex stability in human serum and EDTA solution. The NE3TA-bile acid conjugates instantly bound to (64)Cu with excellent radiolabeling efficiency at room temperature. All NE3TA-bile acid conjugates radiolabeled with (64)Cu remained inert in human serum for 2days without releasing a considerable amount of the radioactivity. The (64)Cu-radiolabeled complexes were further challenged by EDTA in a 100-fold molar excess. Bile acid-N-NE3TA conjugates radiolabeled with (64)Cu were quite stable with a minimal transfer of (64)Cu to EDTA at 4h time point. The in vitro data indicate that the bile acid-N-NE3TA conjugates deserve further biological evaluation for (64)Cu-based targeted PET imaging applications.
一种有前景的双功能螯合剂(N-NE3TA)与胆汁酸、胆酸(CA)、脱氧胆酸(DCA)和鹅去氧胆酸(CDCA)偶联,作为肿瘤靶向载体。对N-NE3TA的胆汁酸偶联物(CA-N-NE3TA、DCA-N-NE3TA和CDCA-N-NE3TA)与正电子发射断层扫描(PET)成像探针(64)Cu的络合情况进行了比较评估。评估了N-NE3TA-胆汁酸偶联物与(64)Cu的放射性标记动力学,并筛选了相应的(64)Cu放射性标记偶联物在人血清和EDTA溶液中的络合物稳定性。NE3TA-胆汁酸偶联物在室温下能迅速与(64)Cu结合,具有优异的放射性标记效率。所有用(64)Cu放射性标记的NE3TA-胆汁酸偶联物在人血清中2天内保持惰性,没有释放出大量放射性。(64)Cu放射性标记的络合物在100倍摩尔过量的EDTA作用下受到进一步挑战。用(64)Cu放射性标记的胆汁酸-N-NE3TA偶联物相当稳定,在4小时时间点时(64)Cu向EDTA的转移量最小。体外数据表明,胆汁酸-N-NE3TA偶联物在基于(64)Cu的靶向PET成像应用中值得进一步进行生物学评估。