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Biochemical changes of the endothelium in the murine model of NO-deficient hypertension

机译:一氧化氮缺乏小鼠模型中内皮细胞的生化变化

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摘要

The main spectral differences between the biochemical compositions of the vascular endothelium of control, hypertensive NO-deficient, and NO-deficient mice supplemented with nitrate were studied using Raman microimaging. A significantly different Raman signature of the endothelium in these three groups in the 1200-1400 cm(-1) region was assigned to the alpha-helix and beta-sheet alterations in the protein secondary structure upon the development of hypertension. The second pronounced biochemical marker of endothelium alterations was the lipid to protein ratio. A lower intensity of the band at 2940 cm(-1) relative to the feature at 1007 cm(-1) in the endothelium in hypertension compared to the control indicated a decrease of the lipid content relative to proteins during the progress of the pathology. The nitrate-based treatment partially reversed the effects of hypertension. The nitrate supplementation restored the lipid to protein ratio in the endothelium to the control level, while the changes in the secondary structure of proteins were irreversible upon nitrate administration.
机译:使用拉曼显微成像技术研究了对照组,高血压的NO缺乏和NO缺乏的小鼠补充硝酸盐后,其血管内皮的生化成分之间的主要光谱差异。在高血压发生后,这三组在1200-1400 cm(-1)区域的内皮细胞的拉曼特征明显不同,这归因于蛋白质二级结构中的α-螺旋和β-折叠变化。内皮改变的第二个明显的生化标记是脂质与蛋白质的比率。与对照组相比,高血压患者内皮中2940 cm(-1)处的条带强度相对于内皮中1007 cm(-1)处的特征强度低,表明在病理过程中脂质相对于蛋白质的含量降低。基于硝酸盐的治疗可部分逆转高血压的影响。硝酸盐的补充使内皮中的脂质与蛋白质的比例恢复到对照水平,而蛋白质的二级结构的变化在施用硝酸盐后是不可逆的。

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