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关于间歇性禁食相关大鼠心肌大分子修饰的红外光谱化学研究结果

Infrared spectrochemical findings on intermittent fasting-associated gross molecular modifications in rat myocardium.

作者信息

Ardahanlı İsa, Özkan Halil İbrahim, Özel Faik, Gurbanov Rafig, Teker Hikmet Taner, Ceylani Taha

机构信息

Department of Cardiology, Faculty of Medicine, Bilecik Şeyh Edebali University Bilecik, Turkey.

Department of Biochemistry, Faculty of Medicine, Atatürk University Erzurum, Turkey.

出版信息

Biophys Chem. 2022 Oct;289:106873. doi: 10.1016/j.bpc.2022.106873. Epub 2022 Aug 8.

Abstract

Cardiovascular diseases are among the primary life-threatening conditions affecting human society. Intermittent fasting is shown to be functional in the prevention of cardiovascular diseases, however, the information on fasting-associated modifications in myocardial biomolecules is limited. This study aimed to determine the impact of 18-h intermittent fasting administered for five weeks on 12 months-old rats using supervised linear discriminant analysis and support vector machine algorithms constructed on spectrochemical data obtained from myocardial tissues. These algorithms revealed gross biomolecular modifications, while quantitative analyses demonstrated higher amounts of saturated lipids (19%), triglycerides (11%), and lipids (56%), in addition to enhancement in membrane dynamics (18%). The concentrations of nucleic acids and glucose are increased by 52%, while the glycogen content is diminished by 61%. The protein carbonylation/oxidation is reduced by 38%, whereas a 35% increase in protein content was measured. Phosphorylated proteins have been calculated to be at higher concentrations in the 13-62% range. The study findings demonstrated significant molecular changes in the myocardium of rats subjected to intermittent fasting.

摘要

心血管疾病是影响人类社会的主要危及生命的病症之一。间歇性禁食已被证明对预防心血管疾病有效,然而,关于禁食相关的心肌生物分子变化的信息有限。本研究旨在使用基于从心肌组织获得的光谱化学数据构建的监督线性判别分析和支持向量机算法,确定对12月龄大鼠进行为期五周的18小时间歇性禁食的影响。这些算法揭示了生物分子的总体变化,而定量分析表明,除了膜动力学增强(18%)外,饱和脂质(19%)、甘油三酯(11%)和脂质(56%)的含量更高。核酸和葡萄糖的浓度增加了52%,而糖原含量减少了61%。蛋白质羰基化/氧化减少了38%,而蛋白质含量测量增加了35%。计算得出磷酸化蛋白的浓度在13 - 62%的较高范围内。研究结果表明,间歇性禁食的大鼠心肌发生了显著的分子变化。

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