Olczyk Paweł, Komosinska-Vassev Katarzyna, Ramos Paweł, Mencner Łukasz, Olczyk Krystyna, Pilawa Barbara
Department of Community Pharmacy, School of Pharmacy and Division of Laboratory Medicine in Sosnowiec, Medical University of Silesia, Kasztanowa 3, 41-200 Katowice, Poland.
Department of Clinical Chemistry and Laboratory Diagnostics, School of Pharmacy with the Division of Laboratory Medicine in Sosnowiec, Medical University of Silesia, Jedności 8, 41-200 Katowice, Poland.
Oxid Med Cell Longev. 2017;2017:4683102. doi: 10.1155/2017/4683102. Epub 2017 May 2.
The evidence exists that radicals are crucial agents necessary for the wound regeneration helping to enhance the repair process. . The lineshape of the electron paramagnetic resonance (EPR) spectra of the burn wounds measured with the low microwave power (2.2 mW) was numerically analyzed. The experimental spectra were fitted by the sum of two and three lines. . The number of the lines in the EPR spectrum corresponded to the number of different groups of radicals in the natural samples after thermal treatment. The component lines were described by Gaussian and Lorentzian functions. The spectra of the burn wounds were superposition of three lines different in shape and in linewidths. The best fitting was obtained for the sum of broad Gaussian, broad Lorentzian, and narrow Lorentzian lines. Dipolar interactions between the unpaired electrons widened the broad Gaussian and broad Lorentzian lines. Radicals with the narrow Lorentzian lines existed mainly in the tested samples. . The spectral shape analysis may be proposed as a useful method for determining the number of different groups of radicals in the burn wounds.
有证据表明,自由基是伤口再生所必需的关键因子,有助于促进修复过程。对用低微波功率(2.2毫瓦)测量的烧伤创面电子顺磁共振(EPR)谱线形状进行了数值分析。实验谱线由两条和三条谱线的总和拟合而成。EPR谱线中的谱线数量与热处理后天然样品中不同自由基基团的数量相对应。组成谱线由高斯函数和洛伦兹函数描述。烧伤创面的谱线是形状和线宽不同的三条谱线的叠加。对宽高斯线、宽洛伦兹线和窄洛伦兹线的总和进行拟合得到了最佳结果。未成对电子之间的偶极相互作用使宽高斯线和宽洛伦兹线变宽。具有窄洛伦兹线的自由基主要存在于测试样品中。谱线形状分析可作为一种有用的方法来确定烧伤创面中不同自由基基团的数量。