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首页> 外文期刊>Journal of Medicinal Chemistry >A Second-Generation ~(99m)Technetium Single Photon Emission Computed Tomography Agent That Provides in Vivo Images of the Dopamine Transporter in Primate Brain
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A Second-Generation ~(99m)Technetium Single Photon Emission Computed Tomography Agent That Provides in Vivo Images of the Dopamine Transporter in Primate Brain

机译:第二代〜(99m)Single单光子发射计算机断层摄影剂,可提供灵长类动物脑中多巴胺转运蛋白的体内图像

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The dopamine transporter (DAT), located presynaptically on dopamine neurons, provides a marker for Parkinson's disease (Pd) and attention deficit hyperactivity disorder (ADHD). In ADHD, DAT density levels are elevated, while in Pd these levels are depleted. The depletion of DAT levels also corresponds with the loss of dopamine. We now describe the design, synthesis, biology, and SPECT imaging in nonhuman primates of second-generation ~(99m)technetium-based tropane ligands that bind potently and selectively to the DAT. We demonstrate that improved selectivity and biological stability allows sufficient agent to enter the brain and label the DAT in vivo to provide a quantitative measure of DAT density in nonhuman primates. We introduce FLUORATEC (N-[(2-(3'-N'-propyl-(1"R)-3"α-(4-fluorophenyl)tropane-2"β-1-propanoyl)(2-mercaptoethyl)amino)acetyl)-2-aminoethanethiolato]technetium(V) oxide), a DAT imaging agent that has emerged from these studies and is now in phase 1 clinical trials in the U.S.
机译:多巴胺转运蛋白(DAT)位于多巴胺神经元的突触前,提供了帕金森氏病(Pd)和注意力不足过动症(ADHD)的标记。在ADHD中,DAT密度水平升高,而在Pd中,这些水平被耗尽。 DAT水平的减少也与多巴胺的减少相对应。现在,我们描述第二代基于〜(99m)-的托烷配体的非人类灵长类动物的设计,合成,生物学和SPECT成像,它们可以有效并选择性地与DAT结合。我们证明改进的选择性和生物稳定性允许足够的试剂进入大脑并在体内标记DAT,以提供非人类灵长类动物DAT密度的定量测量。我们介绍了FLUORATEC(N-[(2-(3'-N'-丙基-(1“ R)-3”α-(4-氟苯基)tropane-2“β-1-丙酰基)(2-巯基乙基)氨基DAT成像剂))乙酰基-2-氨基乙硫基la酸(V)),这些研究已经出现,目前正在美国进行1期临床试验

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