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Free-radical Probes for Functional in vivo EPR Imaging

机译:用于体内EPR成像的自由基探针

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Electron paramagnetic resonance imaging (EPRI) is one of the recent functional imaging modalities that can provide valuable in vivo physiological information on its own merit and aids as a complimentary imaging technique to MRI and PET of tissues especially with respect to in vivo pO_2 (oxygen partial pressure), redox status and pharmacology. EPR imaging mainly deals with the measurement of distribution and in vivo dynamics and redox changes using special non-toxic paramagnetic spin probes that can be infused into the object of investigation. These spin probes should be characterized by simple EPR spectra, preferably with narrow EPR lines. The line width should be reversibly sensitive to the concentration of in vivo pO_2 with a linear dependence. Several non-toxic paramagnetic probes, some particulate and insoluble and others water-soluble and infusible (by intravenous or intramuscular injection) have been developed which can be effectively used to quantitatively assess tissue redox status, and tumor hypoxia. Quantitative assessment of the redox status of tissue in vivo is important in investigating oxidative stress, and that of tissue pO_2 is very important in radiation oncology. Other areas in which EPR imaging and oxymetry may help are in the investigation of tumor-angiogenesis, wound healing, oxygenation of tumor tissue by the ingestion of oxygen-rich gases, etc. The correct choice of the spin probe will depend on the modality of measurement (whether by CW or time-domain EPR imaging) and the particular physiology interrogated. Examples of the available spin probes and some EPR imaging applications employing them are presented.
机译:电子顺磁共振成像(EPRI)是最近的一种功能成像方式之一,可以凭借自身的优点提供有价值的体内生理信息,并作为组织的MRI和PET的补充成像技术,尤其是针对体内pO_2(氧分压)压力),氧化还原状态和药理作用。 EPR成像主要使用可注入研究对象的特殊无毒顺磁性自旋探针来测量分布和体内动力学以及氧化还原变化。这些自旋探针的特征应该是简单的EPR光谱,最好是窄EPR谱线。线宽应对体内pO_2的浓度具有线性依赖性,且可逆敏感。已经开发出了几种无毒的顺磁探针,有些是颗粒状的和不溶的,而另一些是水溶性的和不溶的(通过静脉内或肌内注射),可以有效地用于定量评估组织的氧化还原状态和肿瘤缺氧。体内组织氧化还原状态的定量评估对于研究氧化应激很重要,而组织pO_2的定量评估在放射肿瘤学中非常重要。 EPR成像和血氧定量分析可能会帮助其他领域,例如研究肿瘤血管生成,伤口愈合,通过摄入富氧气体使肿瘤组织氧合等。自旋探针的正确选择将取决于测量(无论是通过连续波还是时域EPR成像)和特定的生理学进行询问。给出了可用的自旋探针的示例以及采用它们的一些EPR成像应用。

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