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用于生物医学和生物物理应用的亲水性三苯甲基自由基TFO的合成与表征

Synthesis and Characterization of Hydrophilic Trityl Radical TFO for Biomedical and Biophysical Applications.

作者信息

Qu Yuying, Li Yingchun, Tan Xiaoli, Zhai Weixiang, Han Guifang, Hou Jingli, Liu Guoquan, Song Yuguang, Liu Yangping

机构信息

Tianjin Key Laboratory on Technologies Enabling, Development of Clinical Therapeutics and Diagnostics, School of Pharmacy, Tianjin Medical University, Tianjin, 300070, P.R. China.

State Key Laboratory of Natural and Biomimetic Drugs, School of Pharmaceutical Sciences, Peking University, 38 Xueyuan Road, Beijing, 100191, P.R. China.

出版信息

Chemistry. 2019 Jun 12;25(33):7888-7895. doi: 10.1002/chem.201900262. Epub 2019 May 15.

Abstract

Tetrathiatriarylmethyl (TAM, trityl) radicals have found wide applications as spin probes/labels for EPR spectroscopy and imaging, and as polarizing agents for dynamic nuclear polarization. The high hydrophilicity of TAM radicals is essential for their biomedical applications. However, the synthesis of hydrophilic TAM radicals (e.g., OX063) is extremely challenging and has only been reported in the patent literature, to date. Herein, an efficient synthesis of a highly water-soluble TAM radical bis(8-carboxyl-2,2,6,6-tetramethylbenzo[1,2-d:4,5-d']bis([1,3]dithiol-4-yl)-mono-(8-carboxyl-2,2,6,6-tetrakis(2-hydroxyethyl)benzo[1,2-d:4,5-d']bis([1,3]dithiol-4-yl)methyl (TFO), which contains four additional hydroxylethyl groups, relative to the Finland trityl radical CT-03, is reported. Similar to OX063, TFO exhibits excellent properties, including high water solubility in phosphate buffer, low log P, low pK , long relaxation times, and negligible binding with bovine serum albumin. On the other hand, TFO has a sharper EPR line and higher O sensitivity than those of OX063. Therefore, in combination with its facile synthesis, TFO should find wide applications in magnetic resonance related fields and this synthetic approach would shed new light on the synthesis of other hydrophilic TAM radicals.

摘要

四硫代三芳基甲基(TAM,三苯甲基)自由基作为电子顺磁共振光谱和成像的自旋探针/标记物以及动态核极化的极化剂已得到广泛应用。TAM自由基的高亲水性对其生物医学应用至关重要。然而,亲水性TAM自由基(如OX063)的合成极具挑战性,迄今为止仅在专利文献中有报道。在此,我们报道了一种高效合成高水溶性TAM自由基双(8-羧基-2,2,6,6-四甲基苯并[1,2-d:4,5-d']双([1,3]二硫醇-4-基)-单-(8-羧基-2,2,6,6-四(2-羟乙基)苯并[1,2-d:4,5-d']双([1,3]二硫醇-4-基)甲基(TFO)的方法,相对于芬兰三苯甲基自由基CT-03,TFO含有四个额外的羟乙基基团。与OX063类似,TFO具有优异的性能,包括在磷酸盐缓冲液中的高水溶性、低log P、低pK、长弛豫时间以及与牛血清白蛋白的可忽略不计的结合。另一方面,TFO的电子顺磁共振谱线比OX063更尖锐,对O的灵敏度更高。因此,结合其简便的合成方法,TFO应在磁共振相关领域有广泛应用,并且这种合成方法将为其他亲水性TAM自由基的合成提供新的思路。

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