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通过氟氯菲铵的正电子发射类似物在小鼠和犬体内靶向ERG钾通道。

In vivo targeting of ERG potassium channels in mice and dogs by a positron-emitting analogue of fluoroclofilium.

作者信息

Kim Sang Wook, Yang Seung Dae, Ahn Byung Jae, Park Jeong Hoon, Lee Dong Soo, Gessner Guido, Heinemann Stefan H, Herdering Wilhelm, Yu Kook Hyun

机构信息

Radiaton Application Research Division, Korea Atomic Energy Research Institute, 150, Dukjin-dong, Yuseong, Daejeon 305-353, Korea.

出版信息

Exp Mol Med. 2005 Aug 31;37(4):269-75. doi: 10.1038/emm.2005.36.

Abstract

The antiarrhythmic clofilium is an efficient blocker of hERG1 potassium channels that are strongly expressed in the heart. Therefore, derivatives of clofilium that emit positrons might be useful tools for monitoring hERG1 channels in vivo. Fluoro- clofilium (F-clofilium) was synthesized and its channel-blocking properties were determined for hERG1 and hEAG1 channels expressed in HEK?293 cells and in Xenopus oocytes. When applied extracellularly in the whole-cell patch-clamp configuration, F-cloflium exhibited a slower onset of block when compared with clofilium, presumably owing to its lower membrane permeability. When applied in the inside-out configuration at the intracellular membrane side, it blocked hEAG1 channels almost as efficiently as clofilium (IC50 1.37 nM and 0.83 nM, respectively). Similar results were obtained for hERG1, showing F-clofilium is a potent hERG1 and hEAG1 channel blocker once it has reached the intracellularly accessible target site at the channel. Using the (18)F-labeled analog we studied the in vivo binding and distribution of F-clofilium in mice and a dog. Greatest activity was found in kidneys and bones. A small but significant enrichment of activity in the dog myocardium known for its expression of cERG1 channels allowed to depict the myocardium of a living dog by PET. Thus, F-clofilium is a useful tool for imaging hERG channels in living organisms.

摘要

抗心律失常药物氯非铵是心脏中高表达的人乙醚相关基因1(hERG1)钾通道的有效阻滞剂。因此,发射正电子的氯非铵衍生物可能是体内监测hERG1通道的有用工具。合成了氟氯非铵(F-氯非铵),并测定了其对在人胚肾293(HEK?293)细胞和非洲爪蟾卵母细胞中表达的hERG1和人乙醚相关基因1(hEAG1)通道的通道阻滞特性。当以全细胞膜片钳配置在细胞外应用时,与氯非铵相比,F-氯非铵表现出较慢的阻滞起效,这可能是由于其较低的膜通透性。当以膜内面向外配置在细胞内膜侧应用时,它阻断hEAG1通道的效率几乎与氯非铵相同(IC50分别为1.37 nM和0.83 nM)。对hERG1也获得了类似结果,表明F-氯非铵一旦到达通道内可及的靶位点,就是一种有效的hERG1和hEAG1通道阻滞剂。使用(18)F标记的类似物,我们研究了F-氯非铵在小鼠和狗体内的结合和分布。在肾脏和骨骼中发现活性最高。在以表达cERG1通道而闻名的狗心肌中,活性有少量但显著的富集,这使得可以通过正电子发射断层扫描(PET)描绘活狗的心肌。因此,F-氯非铵是在活生物体中对hERG通道进行成像的有用工具。

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