Gorodetsky Artem A, Kirilyuk Igor A, Khramtsov Valery V, Komarov Denis A
Vorozhtsov Institute of Organic Chemistry, Novosibirsk, Russia.
Novosibirsk State University, Novosibirsk, Russia.
Magn Reson Med. 2016 Jul;76(1):350-8. doi: 10.1002/mrm.25867. Epub 2015 Aug 24.
Electron paramagnetic resonance (EPR) imaging in the spectral-spatial domain with application of soluble paramagnetic probes provides an opportunity for spatially resolved functional measurements of living objects. The purpose of this study was to develop EPR methods for visualization of oxygenation and acidosis of ischemic myocardium.
EPR oxygen measurements were performed using isotopically substituted (2) H,(15) N-dicarboxyproxyl. The radical has an EPR line width of 320 mG and oxygen-induced line broadening of 0.53 mG/mm Hg, providing oxygen sensitivity down to 5 μM. pH measurements were performed using previously developed pH-sensitive imidazoline nitroxide. The radical has an EPR spectrum with pH-dependable hyperfine splitting, pK = 6.6, providing pH sensitivity of approximately 0.05 U in the physiological range.
EPR imaging of isolated and perfused rat hearts was performed in the two-dimensional + spectral domain. The spatial resolution of the measurements was about 1.4 mm. Marked tissue hypoxia was observed in the ischemic area of the heart after occlusion of the left anterior descending coronary artery. Tissue oxygenation was partly restored upon reperfusion. EPR mapping of myocardial pH indicated acidosis of the ischemic area down to pH 6.7-6.8.
This study demonstrates the capability of low-field EPR and the nitroxide spin probes for mapping of myocardial oxygenation and pH. The developed approaches might be used for noninvasive investigation of microenvironment on living objects. Magn Reson Med 76:350-358, 2016. © 2015 Wiley Periodicals, Inc.
在光谱 - 空间域中应用可溶性顺磁探针进行电子顺磁共振(EPR)成像,为活体对象的空间分辨功能测量提供了机会。本研究的目的是开发用于可视化缺血心肌氧合和酸中毒的EPR方法。
使用同位素取代的(2)H,(15)N - 二羧基脯氨酰进行EPR氧测量。该自由基的EPR线宽为320 mG,氧诱导的线宽增加为0.53 mG / mmHg,氧灵敏度低至5 μM。使用先前开发的pH敏感咪唑啉氮氧化物进行pH测量。该自由基具有随pH变化的超精细分裂的EPR光谱,pK = 6.6,在生理范围内提供约0.05 U的pH灵敏度。
在二维 + 光谱域中对离体灌注大鼠心脏进行EPR成像。测量的空间分辨率约为1.4 mm。在左前降支冠状动脉闭塞后,心脏缺血区域观察到明显的组织缺氧。再灌注后组织氧合部分恢复。心肌pH的EPR图谱显示缺血区域酸中毒至pH 6.7 - 6.8。
本研究证明了低场EPR和氮氧化物自旋探针用于绘制心肌氧合和pH值的能力。所开发的方法可用于对活体对象微环境的无创研究。磁共振医学76:350 - 358, 2016。©2015威利期刊公司。