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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >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.
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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.

机译:合成和初步体外生物学评估新的碳11标记的塞来昔布衍生物作为候选PET示踪剂,用于成像COX-2在癌症中的成像。

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摘要

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/mumol (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.
机译:环氧合酶2(COX-2)酶在多种恶性肿瘤中过表达。这项研究旨在开发使用生物医学成像技术正电子发射断层扫描(PET)对癌症中的COX-2进行成像的新型放射性示踪剂。碳11标记的塞来昔布衍生物[(11)C] 4a-c和[(11)C] 8a-d是通过使用[[11] C]对相应前体进行O-[(11)C]甲基化制备的] CH(3)OTf在碱性条件下,并通过简化固相萃取(SPE)方法分离,基于52 +/- 2%(n = 5)和57 +/- 3%(n = 5)的放射化学产率,基于[(11)C] CO(2)和衰变校正为轰炸(EOB)结束。 EOB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(EOS)为277.5 +/- 92.5 GBq / mumol(n = 5)。已知化合物塞来昔布(4d),4a和4c阻断COX-2的IC(50)值分别为40、290和8 nM,体外生物学分析的初步发现表明合成的新化合物4b和8a-与母体化合物4d相比,d在MDA-MB-435人癌细胞系中显示出相似的强抑制作用。这些结果鼓励碳11标记的celecoxib衍生物作为体内用于癌症中COX-2表达成像的新的PET示踪剂的进一步体内评价。

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