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首页> 外文期刊>Bioorganic and medicinal chemistry >Synthesis and biological evaluation of radio-iodinated benzimidazoles as SPECT imaging agents for NR2B subtype of NMDA receptor.
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Synthesis and biological evaluation of radio-iodinated benzimidazoles as SPECT imaging agents for NR2B subtype of NMDA receptor.

机译:放射性碘代苯并咪唑作为NMDA受体NR2B亚型的SPECT显像剂的合成及生物学评估。

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In this study, the benzimidazole derivatives were synthesized and evaluated as imaging agents for the NR2B subtype of NMDA receptor. Among these ligands, 2-{[4-(4-iodobenzyl)piperidin-1-yl]methyl}benzimidazol-5-ol (8) and N-{2-[4-(4-iodobenzyl)-piperidin-1-ylmethyl]benzoimidazol-5-yl}-methanesulfonamid e (9) exhibited high affinity for the NR2B subunit (K(i) values; 7.28 nM for 8 and 5.75 nM for 9). In vitro autoradiography experiments demonstrated high accumulation in the forebrain regions but low in the cerebellum for both [(125)I]8 and [(125)I]9. These regional distributions of the radioligands correlated with the expression of the NR2B subunit. The in vitro binding of these ligands was inhibited by NR2B antagonist but not by other site ligands, which suggested the high selectivity of [(125)I]8 and [(125)I]9 for the NR2B subunit. In mice, the regional brain uptakes of [(125)I]8 and [(125)I]9 at 5-180 min after administration were 0.42-0.56% and 0.44-0.67% dose/g, respectively. The brain-to-blood ratio of [(125)I]8 at 180 min was reduced by 34% in the presence of non-radioactive ligands and by 59% in the presence of the NR2B ligand Ro-25,6981. These results indicated that [(125)I]8 could be partially bound to the NR2B subunit in vivo. Although the brain uptake of these benzimidazole derivatives was too low to allow for in vivo SPECT imaging, these compounds might be useful scaffolds for the development of imaging probes specific for the NMDA receptors.
机译:在这项研究中,合成了苯并咪唑衍生物并将其作为NMDA受体NR2B亚型的显像剂进行评估。在这些配体中,2-{[4-(4-碘苄基)哌啶-1-基]甲基}苯并咪唑-5-醇(8)和N- {2- [4-(4-碘苄基)-哌啶-1-基(9))对NR2B亚基表现出高亲和力(K(i)值; 8为7.28 nM,9为5.75 nM)。体外放射自显影实验表明,[(125)I] 8和[(125)I] 9均在前脑区域高积累,而在小脑中低积累。放射性配体的这些区域分布与NR2B亚基的表达相关。这些配体的体外结合受到NR2B拮抗剂的抑制,但不受其他位点配体的抑制,这表明[(125)I] 8和[(125)I] 9对NR2B亚基具有很高的选择性。在小鼠中,给药后5-180分钟[[125] I] 8和[(125)I] 9的区域脑摄取分别为0.42-0.56%和0.44-0.67%剂量/ g。在非放射性配体存在下,[(125)I] 8在180分钟时的脑血比降低了34%,在NR2B配体Ro-25,6981存在下降低了59%。这些结果表明[(125)I] 8可以部分结合到体内的NR2B亚基。尽管这些苯并咪唑衍生物的脑摄取太低而无法进行体内SPECT成像,但这些化合物对于开发针对NMDA受体的成像探针可能是有用的支架。

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