Okada T, Fujita M, Shimada S, Sato K, Schloss P, Watanabe Y, Itoh Y, Tohyama M, Nishimura T
Division of Tracer Kinetics, Biomedical Research Center, Osaka University Medical School, Japan.
Nucl Med Biol. 1998 Jan;25(1):53-8. doi: 10.1016/s0969-8051(97)00156-x.
We investigated the effects of three cocaine analogs, beta-CIT (2-beta-carbomethoxy-3-beta-(4-iodophenyl)-tropane), beta-CIT-FE (2-beta-carbomethoxy-3-beta-(4-iodophenyl)-N-(2.fluoroethyl)-nortropa ne), and beta-CIT-FP (2-beta-carbomethoxy-3-beta-(4-iodophenyl)-N-(3-fluoropropyl)-n ortropane), on the uptake of [3H]dopamine(DA), serotonin(5-HT), and 1-norepinephrine (NE) using cell lines permanently expressing DA, 5-HT, and NE transporters, respectively, to determine their affinities for these three transporters. We generated cell lines stably expressing DA, 5-HT, and NE transporters, respectively, by the Chen-Okayama method, and then tested the abilities of (-)cocaine, beta-CIT, beta-CIT-FE, beta-CIT-FP, and clomipramine to inhibit the uptake of [3H]DA, 5-HT, and 2-NE. Ki values of beta-CIT, beta-CIT-FE, and beta-CIT-FP for [3H]DA, 5-HT, 1-NE uptake were 6, 29, and 33 nM, 91, 133, and 130 nM, and 28, 113 and 70 nM, respectively, whereas those of cocaine and clomipramine were 316, 581, and 176 nM and > 10,000, 437, and 851 nM, respectively. Beta-CIT, beta-CIT-FE, and beta-CIT-FP were shown to be potent DA, 5-HT, and NE uptake inhibitors. Beta-CIT and beta-CIT-FP were highly potent and selective dopamine uptake inhibitors, and therefore might be useful for imaging of DA transporter with single photon emission computed tomography (SPECT) or positron emission tomography (PET).
我们研究了三种可卡因类似物,即β-CIT(2-β-甲氧羰基-3-β-(4-碘苯基)-托烷)、β-CIT-FE(2-β-甲氧羰基-3-β-(4-碘苯基)-N-(2-氟乙基)-去甲托烷)和β-CIT-FP(2-β-甲氧羰基-3-β-(4-碘苯基)-N-(3-氟丙基)-去甲托烷)对[3H]多巴胺(DA)、5-羟色胺(5-HT)和去甲肾上腺素(NE)摄取的影响,分别使用稳定表达DA、5-HT和NE转运体的细胞系来确定它们对这三种转运体的亲和力。我们通过陈-冈山县方法分别构建了稳定表达DA、5-HT和NE转运体的细胞系,然后测试了(-)可卡因、β-CIT、β-CIT-FE、β-CIT-FP和氯米帕明抑制[3H]DA、5-HT和去甲肾上腺素摄取的能力。β-CIT、β-CIT-FE和β-CIT-FP对[3H]DA、5-HT、去甲肾上腺素摄取的Ki值分别为6、29和33 nM、91、133和130 nM、28、113和70 nM,而可卡因和氯米帕明的Ki值分别为316、581和176 nM以及>10,000、437和851 nM。结果表明,β-CIT、β-CIT-FE和β-CIT-FP是有效的DA、5-HT和NE摄取抑制剂。β-CIT和β-CIT-FP是高效且选择性的多巴胺摄取抑制剂,因此可能有助于利用单光子发射计算机断层扫描(SPECT)或正电子发射断层扫描(PET)对DA转运体进行成像。