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使用体内电子顺磁共振血氧测定法直接和重复测量心脏和大脑的氧合情况。

Direct and Repeated Measurement of Heart and Brain Oxygenation Using In Vivo EPR Oximetry.

作者信息

Khan Nadeem, Hou Huagang, Swartz Harold M, Kuppusamy Periannan

机构信息

Department of Radiology, EPR Center for the Study of Viable Systems, Geisel School of Medicine at Dartmouth, Norris Cotton Cancer Center, Dartmouth-Hitchcock Medical Center, Lebanon, New Hampshire, USA.

Department of Radiology, EPR Center for the Study of Viable Systems, Geisel School of Medicine at Dartmouth, Norris Cotton Cancer Center, Dartmouth-Hitchcock Medical Center, Lebanon, New Hampshire, USA.

出版信息

Methods Enzymol. 2015;564:529-52. doi: 10.1016/bs.mie.2015.06.023. Epub 2015 Jul 21.

Abstract

Low level of oxygen (hypoxia) is a critical factor that defines the pathological consequence of several pathophysiologies, particularly ischemia, that usually occur following the blockage of a blood vessel in vital organs, such as brain and heart, or abnormalities in the microvasculature, such as peripheral vascular disease. Therefore, methods that can directly and repeatedly quantify oxygen levels in the brain and heart will significantly improve our understanding of ischemic pathologies. Importantly, such oximetry capability will facilitate the development of strategies to counteract low levels of oxygen and thereby improve outcome following stroke or myocardial infarction. In vivo electron paramagnetic resonance (EPR) oximetry has the capability to monitor tissue oxygen levels in real time. The method has largely been tested and used in experimental animals, although some clinical measurements have been performed. In this chapter, a brief overview of the methodology to repeatedly quantify oxygen levels in the brain and heart of experimental animal models, ranging from mice to swine, is presented. EPR oximetry requires a one-time placement of an oxygen-sensitive probe in the tissue of interest, while the rest of the procedure for reliable, accurate, and repeated measurements of pO2 (partial pressure of oxygen) is noninvasive and can be repeated as often as desired. A multisite oximetry approach can be used to monitor pO2 at many sites simultaneously. Building on significant advances in the application of EPR oximetry in experimental animal models, spectrometers have been developed for use in human subjects. Initial feasibility of pO2 measurement in solid tumors of patients has been successfully demonstrated.

摘要

低氧水平(缺氧)是一个关键因素,它决定了几种病理生理过程的病理后果,尤其是缺血,缺血通常发生在重要器官(如脑和心脏)的血管阻塞之后,或者发生在微血管异常(如外周血管疾病)之后。因此,能够直接且反复量化脑和心脏中氧水平的方法将显著增进我们对缺血性病理的理解。重要的是,这种血氧测定能力将有助于制定应对低氧水平的策略,从而改善中风或心肌梗死后的预后。体内电子顺磁共振(EPR)血氧测定法有能力实时监测组织氧水平。该方法已在很大程度上在实验动物中进行了测试和应用,尽管也进行了一些临床测量。在本章中,将简要概述从小鼠到猪等实验动物模型的脑和心脏中反复量化氧水平的方法。EPR血氧测定法需要一次性将氧敏感探针放置在感兴趣的组织中,而其余用于可靠、准确且反复测量pO2(氧分压)的过程是非侵入性的,并且可以根据需要重复进行。多部位血氧测定法可用于同时监测多个部位的pO2。基于EPR血氧测定法在实验动物模型应用中的重大进展,已开发出用于人体受试者的光谱仪。已成功证明了在患者实体瘤中测量pO2的初步可行性。

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