首页> 美国卫生研究院文献>Antioxidants >The Structural Integrity of the Model Lipid Membrane during Induced Lipid Peroxidation: The Role of Flavonols in the Inhibition of Lipid Peroxidation
【2h】

The Structural Integrity of the Model Lipid Membrane during Induced Lipid Peroxidation: The Role of Flavonols in the Inhibition of Lipid Peroxidation

机译:脂质过氧化诱导过程中模型脂质膜的结构完整性:黄酮醇在抑制脂质过氧化中的作用

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

The structural integrity, elasticity, and fluidity of lipid membranes are critical for cellular activities such as communication between cells, exocytosis, and endocytosis. Unsaturated lipids, the main components of biological membranes, are particularly susceptible to the oxidative attack of reactive oxygen species. The peroxidation of unsaturated lipids, in our case 1,2-dioleoyl-sn-glycero-3-phosphocholine (DOPC), induces the structural reorganization of the membrane. We have employed a multi-technique approach to analyze typical properties of lipid bilayers, i.e., roughness, thickness, elasticity, and fluidity. We compared the alteration of the membrane properties upon initiated lipid peroxidation and examined the ability of flavonols, namely quercetin (QUE), myricetin (MCE), and myricitrin (MCI) at different molar fractions, to inhibit this change. Using Mass Spectrometry (MS) and Fourier Transform Infrared Spectroscopy (FTIR), we identified various carbonyl products and examined the extent of the reaction. From Atomic Force Microscopy (AFM), Force Spectroscopy (FS), Small Angle X-Ray Scattering (SAXS), and Electron Paramagnetic Resonance (EPR) experiments, we concluded that the membranes with inserted flavonols exhibit resistance against the structural changes induced by the oxidative attack, which is a finding with multiple biological implications. Our approach reveals the interplay between the flavonol molecular structure and the crucial membrane properties under oxidative attack and provides insight into the pathophysiology of cellular oxidative injury.
机译:脂质膜的结构完整性,弹性和流动性对于细胞活动(例如细胞之间的通讯,胞吐作用和胞吞作用)至关重要。生物膜的主要成分不饱和脂质特别容易受到活性氧的氧化攻击。在我们的情况下,不饱和脂质的过氧化作用是1,2-油酰基-sn-甘油-3-磷酸胆碱(DOPC),引起膜的结构重组。我们采用了多种技术方法来分析脂质双层的典型特性,即粗糙度,厚度,弹性和流动性。我们比较了脂质过氧化引发后膜性质的变化,并研究了黄酮醇(即槲皮素(QUE),杨梅素(MCE)和杨梅素(MCI))在不同摩尔分数下抑制这种变化的能力。使用质谱(MS)和傅立叶变换红外光谱(FTIR),我们鉴定了各种羰基产物并检查了反应程度。通过原子力显微镜(AFM),力谱(FS),小角X射线散射(SAXS)和电子顺磁共振(EPR)实验,我们得出结论,含有黄酮醇的膜表现出对由黄酮醇引起的结构变化的抵抗力。氧化攻击,这是一个具有多种生物学意义的发现。我们的方法揭示了在氧化攻击下黄酮醇分子结构和关键膜特性之间的相互作用,并提供了对细胞氧化损伤的病理生理学的认识。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号