首页> 外文期刊>Journal of pharmacological sciences. >New methods to evaluate endothelial function: Evaluation of endothelial function by hemoglobin-nitric oxide complex using electron paramagnetic resonance spectroscopy.
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New methods to evaluate endothelial function: Evaluation of endothelial function by hemoglobin-nitric oxide complex using electron paramagnetic resonance spectroscopy.

机译:评估内皮功能的新方法:使用电子顺磁共振谱法评价血红蛋白 - 一氧化氮复合物的内皮功能。

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摘要

This minireview describes the practical use of assay systems to detect nitric oxide (NO) by electron paramagnetic resonance (EPR) spectroscopy for evaluation of endothelial functions. The iron(II)-dithiocarbamate complexes, such as iron(II)-(N-methyl-D-glucamine dithiocarbamate), are commonly used in EPR detection of NO both in vivo and in vitro. However, due to their redox activity, these complexes have some drawbacks that limit their usefulness for the detection of NO. On the other hand, the measurement of hemoglobin-NO adduct (HbNO) in whole blood by the EPR method seems relevant for the assessment of systemic NO levels. However, ceruloplasmin and an unknown radical species overlapping the same magnetic field as that of HbNO, which makes it physically impossible to measure small amounts of HbNO. Thus, to reveal the EPR spectrum of HbNO, we developed the EPR signal subtraction method, which is based on the computer-assisted subtraction of the digitized EPR spectrum of HbNO-depleted blood from that ofthe sample blood using software. Using this technique, we succeeded in measuring the steady blood HbNO level as an index of NO by the EPR HbNO signal subtraction method. We also demonstrated that temocapril reduces abnormalities of NO dynamics in the L-NAME (N(omega)-nitro-L-arginine-methylester)-induced endothelial dysfunction of rats using the EPR HbNO signal subtraction method.
机译:该MINIREVIEW描述了测定系统的实际用途,以通过电子顺磁共振(EPR)光谱检测一氧化氮(NO)以评估内皮功能。铁(II) - 二硫代氨基甲磺酸酯配合物,例如铁(II) - (N-甲基-D-葡聚糖二硫代氨基甲酸酯),通常用于VIVO和体外含量的EPR检测。然而,由于它们的氧化还原活动,这些复合物具有一些缺点,这限制了它们对否的检测的有用性。另一方面,通过EPR方法的全血血红蛋白 - 没有加合物(HBNO)的测量似乎与系统性没有水平的评估相关。然而,刺激素和一个未知的自由基物质与HbnO相同的磁场,这使得它可以在物理上不可能测量少量HBNO。因此,为了揭示HBNO的EPR光谱,我们开发了EPR信号减法方法,其基于使用软件的样品血液的HBNO耗尽血液的数字化EPR光谱的计算机辅助减法。使用这种技术,我们成功测量稳定的血液HBNO水平作为EPR HBNO信号减法方法的索引。我们还证明,TemocapRil在L-Name(N(OMEGA)-NITRO-L-精氨酸 - 甲基酯)中没有动态的异常,诱导了使用EPR HBNO信号减法法的内皮功能障碍。

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