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用于通过电子顺磁共振光谱监测细胞硫醇氧化还原状态的二硫键连接的二硝基氧自由基

Disulfide-Linked Dinitroxides for Monitoring Cellular Thiol Redox Status through Electron Paramagnetic Resonance Spectroscopy.

作者信息

Legenzov Eric A, Sims Stephen J, Dirda Nathaniel D A, Rosen Gerald M, Kao Joseph P Y

机构信息

Center for Biomedical Engineering & Technology, and Department of Physiology, University of Maryland School of Medicine , Baltimore, Maryland 21201, United States.

Department of Pharmaceutical Sciences, University of Maryland School of Pharmacy , Baltimore, Maryland 21201, United States.

出版信息

Biochemistry. 2015 Dec 1;54(47):6973-82. doi: 10.1021/acs.biochem.5b00531. Epub 2015 Nov 13.

Abstract

Intracellular thiol-disulfide redox balance is crucial to cell health, and may be a key determinant of a cancer's response to chemotherapy and radiation therapy. The ability to assess intracellular thiol-disulfide balance may thus be useful not only in predicting responsiveness of cancers to therapy, but in assessing predisposition to disease. Assays of thiols in biology have relied on colorimetry or fluorimetry, both of which require UV-visible photons, which do not penetrate the body. Low-frequency electron paramagnetic resonance imaging (EPRI) is an emerging magnetic imaging technique that uses radio waves, which penetrate the body well. Therefore, in combination with tailored imaging agents, EPRI affords the opportunity to image physiology within the body. In this study, we have prepared water-soluble and membrane-permeant disulfide-linked dinitroxides, at natural isotopic abundance, and with D,(15)N-substitution. Thiols such as glutathione cleave the disulfides, with simple bimolecular kinetics, to yield the monomeric nitroxide species, with distinctive changes in the EPR spectrum. Using the D,(15)N-substituted disulfide-dinitroxide and EPR spectroscopy, we have obtained quantitative estimates of accessible intracellular thiol in cultured human lymphocytes. Our estimates are in good agreement with published measurements. This suggests that in vivo EPRI of thiol-disulfide balance is feasible. Finally, we discuss the constraints on the design of probe molecules that would be useful for in vivo EPRI of thiol redox status.

摘要

细胞内硫醇-二硫键氧化还原平衡对细胞健康至关重要,可能是癌症对化疗和放疗反应的关键决定因素。因此,评估细胞内硫醇-二硫键平衡的能力不仅有助于预测癌症对治疗的反应,还能评估疾病易感性。生物学中硫醇的检测依赖于比色法或荧光法,这两种方法都需要紫外-可见光光子,而这些光子无法穿透人体。低频电子顺磁共振成像(EPRI)是一种新兴的磁成像技术,它使用的无线电波能很好地穿透人体。因此,结合定制的成像剂,EPRI提供了对体内生理过程进行成像的机会。在本研究中,我们制备了具有天然同位素丰度且经D、(15)N取代的水溶性且可透过细胞膜的二硫键连接的二硝基氧化物。谷胱甘肽等硫醇以简单的双分子动力学裂解二硫键,产生单体硝基氧物种,EPR谱会发生明显变化。使用D、(15)N取代的二硫键-二硝基氧化物和EPR光谱,我们获得了培养的人淋巴细胞中可及细胞内硫醇的定量估计值。我们的估计值与已发表的测量结果高度一致。这表明体内硫醇-二硫键平衡的EPRI是可行的。最后,我们讨论了对用于硫醇氧化还原状态体内EPRI的探针分子设计的限制。

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