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Phosphonated Trityl Probes for Concurrent in Vivo Tissue Oxygen and pH Monitoring Using Electron Paramagnetic Resonance-Based Techniques

机译:膦基三苯甲基探针用于基于电子顺磁共振技术同时检测体内组织氧和pH

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摘要

Previously we proposed the concept of dual function pH and oxygen paramagnetic probes based on the incorporation of ionizable groups into the structure of persistent triarylmethyl radicals, TAMs (J. Am. Chem. Soc. >2007, 129, 7240–7241). In this paper, we synthesized an asymmetric monophosphonated TAM probe with the simplest doublet hfs pattern ideally suited for dual function electron paramagnetic resonance (EPR)-based applications. An extraordinary low line width of the synthesized deuterated derivative, p1TAM-D (ΔHpp ≤ 50 mG, Lorentz line width, ≤20 mG) results in high sensitivity to pO2 due to oxygen-induced line broadening (ΔLW/ΔpO2 ≈ 0.5 mG/mmHg or ≈400 mG/mM); accuracy of pO2 measurement, ≈1 mmHg). The presence of a phosphono group in the p1TAM-D structure provides pH sensitivity to its EPR spectra in the physiological range of pH from 5.9 to 8.2 with the ratio of signal intensities of protonated and deprotonated states being a reliable pH marker (accuracy of pH measurements, ± 0.05). The independent character of pH and [O2] effects on the EPR spectra of p1TAM-D provides dual functionality to this probe. The L-band EPR studies performed in breast tumor-bearing mice show a significant difference in extracellular pH and pO2 between tumor and normal mammary gland tissues, as well as the effect of animal breathing with 100% O2 on tissue oxygenation. The developed dual function phosphonated p1TAM-D probe provides a unique tool for in vivo concurrent tissue oxygen and pH monitoring.
机译:以前,我们基于将可电离基团结合到持久性三芳基甲基自由基TAM的结构中,提出了双功能pH和氧顺磁探针的概念(J. Am。Chem。Soc。> 2007 ,129,7240 –7241)。在本文中,我们合成了具有最简单的doublet hfs模式的不对称单膦酸TAM探针,该探针非常适合基于双功能电子顺磁共振(EPR)的应用。合成的氘代衍生物p1TAM-D的极低线宽(ΔHpp≤50 mG,Lorentz线宽,≤20mG)由于氧气引起的线展宽(ΔLW/ΔpO2≈0.5 mG​​ / mmHg,导致对pO2的高敏感性)或≈400mG / mM); pO2测量的精确度,≈1mmHg)。 p1TAM-D结构中膦酰基的存在在其pH值为5.9到8.2的生理范围内为其EPR光谱提供了pH敏感性,质子化态和去质子化态的信号强度之比是可靠的pH标记(pH测量的准确性) ,±0.05)。 pH和[O2]对p1TAM-D的EPR光谱的独立影响为该探针提供了双重功能。在患有乳腺肿瘤的小鼠中进行的L波段EPR研究显示,肿瘤与正常乳腺组织之间的细胞外pH和pO2有显着差异,以及100%O2的动物呼吸对组织氧合的影响。开发的双功能磷酸化p1TAM-D探针为体内同时进行组织氧和pH监测提供了独特的工具。

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