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基于低频电子顺磁共振的pH敏感成像:生物应用的模型研究

pH-sensitive imaging by low-frequency EPR: a model study for biological applications.

作者信息

Sotgiu A, Mäder K, Placidi G, Colacicchi S, Ursini C L, Alecci M

机构信息

Dipartimento di Scienze e Tecnologie Biomediche, Universita' dell'Aquila, Italy.

出版信息

Phys Med Biol. 1998 Jul;43(7):1921-30. doi: 10.1088/0031-9155/43/7/013.

Abstract

The use of pH-sensitive nitroxides, in conjunction with low-frequency EPR, offers a unique opportunity for non-invasive assessment of pH values (in the range 0 to 14) in living animals. In the present study, we have investigated the potential use of pH-sensitive nitroxide free radicals in conjunction with EPR imaging techniques at low and very low frequencies (280 MHz-2.1 GHz). In particular, we have measured the hyperfine splitting (hfs) of a pH-sensitive probe at three different EPR frequencies: 280 MHz, 1.1 GHz and 2.1 GHz. We have also developed EPR imaging experiments with phantoms simulating in vivo conditions, using pH-sensitive probes at 280 MHz (spatial-spatial) and 1.1 GHz (spectral-spatial). Finally, we discuss the actual sensitivity/resolution limits of the EPR imaging techniques at low frequencies. Practical applications of this method in the biomedical field are suggested for the continuous and non-invasive localization of pH in vivo.

摘要

使用对pH敏感的氮氧化物,并结合低频电子顺磁共振(EPR),为无创评估活体动物体内的pH值(范围为0至14)提供了独特的机会。在本研究中,我们研究了对pH敏感的氮氧化物自由基与低频和甚低频(280 MHz - 2.1 GHz)的EPR成像技术结合使用的潜在用途。特别是,我们在三个不同的EPR频率下测量了对pH敏感的探针的超精细分裂(hfs):280 MHz、1.1 GHz和2.1 GHz。我们还使用280 MHz(空间 - 空间)和1.1 GHz(光谱 - 空间)的对pH敏感的探针,开展了模拟体内条件的体模EPR成像实验。最后,我们讨论了低频EPR成像技术的实际灵敏度/分辨率极限。建议将该方法在生物医学领域实际应用于体内pH的连续无创定位。

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