首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >The use of thallium diethyldithiocarbamate for mapping CNS potassium metabolism and neuronal activity: Tl+ -redistribution, Tl+ -kinetics and Tl+ -equilibrium distribution.
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The use of thallium diethyldithiocarbamate for mapping CNS potassium metabolism and neuronal activity: Tl+ -redistribution, Tl+ -kinetics and Tl+ -equilibrium distribution.

机译:ethyl二乙基二硫代氨基甲酸al用于绘制CNS钾代谢和神经元活动的图谱:Tl +-重新分布,Tl +-动力学和Tl +-平衡分布。

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摘要

The potassium (K(+)) analogue thallium (Tl(+)) can be used as a tracer for mapping neuronal activity. However, because of the poor blood-brain barrier (BBB) K(+) -permeability, only minute amounts of Tl(+) enter the brain after systemic injection of Tl(+) -salts like thallium acetate (TlAc). We have recently shown that it is possible to overcome this limitation by injecting animals with the lipophilic chelate complex thallium diethyldithiocarbamate (TlDDC), that crosses the BBB and releases Tl(+) prior to neuronal or glial uptake. TlDDC can thus be used for mapping CNS K(+) metabolism and neuronal activity. Here, we analyze Tl(+) -kinetics in the rodent brain both experimentally and using simple mathematical models. We systemically injected animals either with TlAc or with TlDDC. Using an autometallographic method we mapped the brain Tl(+) -distribution at various time points after injection. We show that the patterns and kinetics of Tl(+) -redistribution in the brain are essentially the same irrespective of whether animals have been injected with TlAc or TlDDC. Data from modeling and experiments indicate that transmembrane Tl(+) -fluxes in cells within the CNS in vivo equilibrate at similar rates as K(+) -fluxes in vitro. This equilibration is much faster than and largely independent of the equilibration of Tl(+) -fluxes across the BBB. The study provides further proof-of-concept for the use of TlDDC for mapping neuronal activity and CNS K(+) -metabolism. A theoretical guideline is given for the use of K(+) -analogues for imaging neuronal activity with general implications for the use of metal ions in neuroimaging.
机译:钾(K(+))类似物al(Tl(+))可用作示踪剂,用于绘制神经元活动图。但是,由于血脑屏障(BBB)的K(+)渗透性差,在全身注射Tl(+)-盐(如乙酸acetate(TlAc))后,只有极少量的Tl(+)进入大脑。我们最近表明,可以通过向动物注射亲脂性螯合物二乙基二硫代氨基甲酸al(TlDDC)来克服这一局限,该化合物穿过BBB并在摄取神经元或神经胶质之前释放Tl(+)。 TIDDC因此可以用于映射CNS K(+)代谢和神经元活动。在这里,我们通过实验和使用简单的数学模型来分析啮齿动物大脑中的Tl(+)-动力学。我们向动物全身注射TlAc或TlDDC。使用自动金相学方法,我们绘制了注射后各个时间点的大脑Tl(+)-分布。我们显示,无论动物是否注射过TlAc或TlDDC,大脑中Tl(+)-重新分布的模式和动力学基本相同。来自建模和实验的数据表明,体内CNS内细胞中的跨膜Tl(+)-通量以与体外K(+)-通量相似的速率平衡。这种平衡比整个BBB中Tl(+)-磁通量的平衡要快得多,并且在很大程度上与之无关。这项研究为使用TIDDC定位神经元活动和CNS K(+)代谢提供了进一步的概念证明。给出了使用K(+)模拟物对神经元活动进行成像的理论指导,对在神经影像学中使用金属离子具有普遍意义。

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