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首页> 外文期刊>Bosnian Journal of Basic Medical Sciences >Analysis of pulmonary surfactant by Fourier transform infrared spectroscopy after exposure to sevoflurane and isoflurane
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Analysis of pulmonary surfactant by Fourier transform infrared spectroscopy after exposure to sevoflurane and isoflurane

机译:七氟醚和异氟烷暴露后通过傅里叶变换红外光谱法分析肺表面活性物质

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Pulmonary surfactant, consisting primarily of phospholipids and four surfactant-specific proteins, is among the first structures that is exposed to inhalation anesthetics. Consequently, changes of pulmonary surfactant due to this exposure could cause respiratory complications after long anesthetic procedures. Fourier transform infrared (FTIR) spectroscopy was used to explore the effects of two inhalation anesthetics, sevoflurane and isoflurane, on a commercially available pulmonary surfactant. The research was primarily focused on the effect of anesthetics on the lipid component of the surfactant. Four different concentrations of anesthetics were added, and the doses were higher from the low clinical doses typically used. Recorded spectra were analyzed using principal component analysis, and the Student’s t -test was performed to confirm the results. The exposure to both anesthetics induced similar changes, consistent with the increase of the anesthetic concentration. The most pronounced effect was on the hydrophilic head group of phospholipids, which is in agreement with the disruption of the hydrogen bond, caused by the anesthetics. A change in the band intensities of CH 2 stretching vibrations, indicative of a disordering effect of anesthetics on the hydrophobic tails of phospholipids, was also observed. Changes induced by isoflurane appear to be more pronounced than those induced by sevoflurane. Furthermore, our results suggest that FTIR spectroscopy is a promising tool in studying anesthetic effects on pulmonary surfactant.
机译:肺表面活性剂主要由磷脂和四种表面活性剂特异性蛋白组成,是暴露于吸入麻醉剂的首批结构之一。因此,长时间接触麻醉剂后,由于这种暴露而引起的肺表面活性物质的变化可能导致呼吸系统并发症。傅里叶变换红外(FTIR)光谱用于研究两种吸入麻醉药七氟醚和异氟烷对市售肺表面活性剂的影响。研究主要集中在麻醉药对表面活性剂脂质成分的影响上。添加了四种不同浓度的麻醉剂,并且该剂量比通常使用的低临床剂量更高。使用主成分分析法分析记录的光谱,并进行Student t检验以确认结果。两种麻醉剂的暴露引起相似的变化,这与麻醉剂浓度的增加一致。最明显的作用是对磷脂的亲水性头基,这与麻醉药引起的氢键的破坏一致。还观察到CH 2拉伸振动的谱带强度的变化,表明麻醉剂对磷脂的疏水性尾部有无序作用。异氟烷引起的变化似乎比七氟醚引起的变化更为明显。此外,我们的结果表明,FTIR光谱学是研究麻醉药对肺表面活性剂的有前途的工具。

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