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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Ionizing Radiation Induces Structural and Functional Damage on the Molecules of Rat Brain Homogenate Membranes: A Fourier Transform Infrared (FT-IR) Spectroscopic Study
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Ionizing Radiation Induces Structural and Functional Damage on the Molecules of Rat Brain Homogenate Membranes: A Fourier Transform Infrared (FT-IR) Spectroscopic Study

机译:电离辐射诱导大鼠脑匀浆膜分子的结构和功能损伤:傅立叶变换红外(FT-IR)光谱研究。

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Humans can be exposed to ionizing radiation, due to various reasons, whose structural effects on biological membranes are not well defined. The current study aims to understand the ionizing radiation-induced structural and functional alterations in biomolecules of brain membranes using Fourier transform infrared (FT-IR) spectroscopy using rat animal models. For this purpose, 1000 cGy of ionizing radiation was specifically directed to the head of Sprague Dawley rats. The rats were decapitated after 24 h. The results revealed that the lipid-to-protein ratio decreased and that irradiation caused lipid peroxidation and increases in the amounts of olefinic carbonyl, and methylene groups of lipids. In addition, ionizing radiation induced a decrease in membrane fluidity, disordering of membrane lipids, strengthening of the hydrogen bonding of Vie phosphate groups of lipid head-groups, and weakening in the hydrogen bonding of the interfacial carbonyl groups of lipids. Radiation further caused significant decrements in the a-helix and turns, and significant increments in the beta-sheet and random coil contents in the protein structure. Hierarchical cluster analyses, performed in the whole region (3030-1000 cm(-1)), lipid (3030-2800 cm(-1)), and protein (1700-1600 cm(-1)) regions separately, successfully differentiated the control and irradiated groups of rat brain membranes and showed that proteins in the membranes are affected more than lipids from the damages induced with ionizing radiation. As a result, the current study showed that FT-IR spectroscopy can be used successfully as a novel method to monitor radiation-induced alterations on biological membranes.
机译:由于各种原因,人类可能会暴露于电离辐射中,其对生物膜的结构影响尚不明确。当前的研究旨在使用大鼠模型,通过傅立叶变换红外光谱(FT-IR)来了解电离辐射诱导的脑膜生物分子结构和功能的改变。为此,将1000 cGy的电离辐射专门对准Sprague Dawley大鼠的头部。 24小时后将大鼠断头。结果表明,脂质与蛋白质的比率降低,并且辐射引起脂质过氧化,并且脂质的烯基羰基和亚甲基的量增加。另外,电离辐射引起膜流动性的降低,膜脂质的无序化,脂质头基的Vie磷酸基团的氢键的增强以及脂质的界面羰基的氢键的减弱。辐射进一步引起α-螺旋和匝数的显着减少,以及β-折叠和蛋白质结构中无规卷曲含量的显着增加。在整个区域(3030-1000 cm(-1)),脂质(3030-2800 cm(-1))和蛋白质(1700-1600 cm(-1))区域分别进行的层次聚类分析成功地区分了对照和辐照了大鼠脑膜组,结果表明,电离辐射引起的损伤比脂类对膜的影响更大。结果,当前的研究表明,FT-IR光谱法可以成功地用作监测生物膜上辐射引起的变化的新方法。

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