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新型碳-11 标记塞来昔布衍生物的合成及初步体外生物学评价,作为 COX-2 表达成像的候选 PET 示踪剂用于癌症。

Synthesis and preliminary in vitro biological evaluation of new carbon-11-labeled celecoxib derivatives as candidate PET tracers for imaging of COX-2 expression in cancer.

机构信息

Department of Radiology and Imaging Sciences, Indiana University School of Medicine, 1345 West 16th Street, L3-208, Indianapolis, IN 46202, USA.

出版信息

Eur J Med Chem. 2011 Sep;46(9):4760-7. doi: 10.1016/j.ejmech.2011.05.024. Epub 2011 May 20.

Abstract

The enzyme cyclooxygenase-2 (COX-2) is overexpressed in a variety of malignant tumors. This study was designed to develop new radiotracers for imaging of COX-2 in cancer using biomedical imaging technique positron emission tomography (PET). Carbon-11-labeled celecoxib derivatives, [(11)C]4a-c and [(11)C]8a-d, were prepared by O-[(11)C] methylation of their corresponding precursors using [(11)C]CH(3)OTf under basic conditions and isolated by a simplified solid-phase extraction (SPE) method in 52 ± 2% (n = 5) and 57 ± 3% (n = 5) radiochemical yields based on [(11)C]CO(2) and decay corrected to end of bombardment (EOB). The overall synthesis time from EOB was 23 min, the radiochemical purity was >99%, and the specific activity at end of synthesis (EOS) was 277.5 ± 92.5 GBq/μmol (n = 5). The IC(50) values to block COX-2 for known compounds celecoxib (4d), 4a and 4c were 40, 290 and 8 nM, respectively, and preliminary findings from in vitro biological assay indicated that the synthesized new compounds 4b and 8a-d display similar strong inhibitory effectiveness in the MDA-MB-435 human cancer cell line in comparison with the parent compound 4d. These results encourage further in vivo evaluation of carbon-11-labeled celecoxib derivatives as new potential PET radiotracers for imaging of COX-2 expression in cancer.

摘要

环氧合酶-2(COX-2)在多种恶性肿瘤中过度表达。本研究旨在利用生物医学成像技术正电子发射断层扫描(PET)开发用于 COX-2 成像的新型放射性示踪剂。通过使用 [(11)C]CH(3)OTf 在碱性条件下对其相应前体进行 O-[(11)C]甲基化,并用简化的固相萃取(SPE)方法在 52 ± 2%(n = 5)和 57 ± 3%(n = 5)的放射性化学产率下制备了 [(11)C]标记的塞来昔布衍生物 [(11)C]4a-c 和 [(11)C]8a-d,基于 [(11)C]CO2 和衰变校正至终末轰击(EOB)。从 EOB 开始的总合成时间为 23 分钟,放射化学纯度>99%,合成结束时的比活度为 277.5 ± 92.5 GBq/μmol(n = 5)。已知化合物塞来昔布(4d)、4a 和 4c 阻断 COX-2 的 IC50 值分别为 40、290 和 8 nM,体外生物学测定的初步结果表明,与母体化合物 4d 相比,合成的新化合物 4b 和 8a-d 在 MDA-MB-435 人癌细胞系中显示出类似的强抑制作用。这些结果鼓励进一步评估碳-11 标记的塞来昔布衍生物作为新的潜在 PET 放射性示踪剂,用于成像 COX-2 在癌症中的表达。

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