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Effect of anaesthesia-induced alterations in haemodynamics on in vivo kinetics of nitroxyl probes in electron spin resonance spectroscopy

机译:麻醉诱导的血流动力学变化对电子自旋共振光谱中硝氧基探针体内动力学的影响

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Although the advent of in vivo electron spin resonance (ESR) spectroscopy has allowed analysis of the redox status of living animals, whether the haemodynamic condition affects the signal decay rate remains unknown. Three kinds of haemodynamic conditions were generated by changing the anaesthetic dosage in mice. Haemodynamics was analysed (n = 6 each) and in vivo ESR was performed to measure the signal decay rates of three nitroxyl spin probes (carbamoyl-, carboxy- and methoxycarbonyl-PROXYL) at the chest and head regions (n = 6 for each condition and probe). Haemodynamic analysis revealed negative inotropic and chronotropic effects on the cardiovascular system depending on the depth of anaesthesia. Although signal decay rates differed among three probes, they were not affected by heart rate alteration. In this study we report the haemodynamics-independent signal decay rate of nitoxyl probes.
机译:尽管体内电子自旋共振(ESR)光谱技术的出现允许对活体动物的氧化还原状态进行分析,但是血流动力学条件是否影响信号衰减率仍然未知。通过改变小鼠的麻醉剂量产生三种血液动力学条件。分析了血流动力学(每组n = 6),并进行了体内ESR,以测量胸部和头部区域的三种硝基氧基自旋探针(氨基甲酰基,羧基和甲氧基羰基PROXYL)的信号衰减率(每种情况n = 6)和探测)。血流动力学分析显示,取决于麻醉深度,对心血管系统的正性和变时性影响较小。尽管三个探头之间的信号衰减率不同,但它们不受心率变化的影响。在这项研究中,我们报告了硝氧基探针的血流动力学独立信号衰减率。

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