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首页> 外文期刊>Journal of pharmaceutical sciences. >Analysis of nitroxyl spin probes in mouse brain by X-band ESR with microdialysis technique.
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Analysis of nitroxyl spin probes in mouse brain by X-band ESR with microdialysis technique.

机译:X波段ESR微透析技术分析小鼠脑中的硝酰自旋探针。

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Stable nitroxyl radicals are widely used in electron spin resonance (ESR) studies in vivo to determine ROS generation, but there are insufficient data on how their distribution to various tissues, excretion, and/or systemic signal decay affect the signal decay in a region of interest. Here, we evaluated the level of spin probe in the brain using a microdialysis combined with X-band ESR spectroscopy, to clarify the BBB permeability of different spin probes. We also determined the association between PROXYL spin probe signal decay in the head and the probe's level in the brain, its excretion in urine, and its rate of signal decay in other areas and tissues. Dialysate recovered from the mouse prefrontal cortex was used to determine the total spin probe level in the brain by X-band ESR spectroscopy. There was a positive correlation between the level of spin probes in the brain and their partition coefficients. Furthermore, the in vivo decay rate of the nitroxyl radical signal in the head was associated with the probes' level in the brain, but not with its systemic signal decay rate or excretion into urine. These basic data may support the use of PROXYLs as site-specific ROS probes in the brain.
机译:稳定的硝酰基自由基在体内电子自旋共振(ESR)研究中广泛用于确定ROS的产生,但是关于它们在各种组织中的分布,排泄和/或系统性信号衰减如何影响信号传导区域中的信号衰减的数据尚不足。利益。在这里,我们使用微透析结合X波段ESR光谱仪评估了大脑中自旋探针的水平,以阐明不同自旋探针的BBB渗透性。我们还确定了PROXYL自旋探针在头部的信号衰减与大脑中探针的水平,其在尿液中的排泄以及其在其他区域和组织中的信号衰减率之间的关联。从小鼠前额叶皮层中回收的透析液用于通过X波段ESR光谱法确定大脑中的总自旋探针水平。大脑中旋转探针的水平与其分配系数之间存在正相关。此外,头部中的硝酰自由基信号在体内的衰减速率与探针在大脑中的水平有关,但与系统性信号衰减速率或向尿液的排泄无关。这些基本数据可能支持将PROXYLs用作大脑中特定于位点的ROS探针。

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