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Low-density lipoproteins investigated under high hydrostatic pressure by elastic incoherent neutron scattering

机译:通过弹性不相干中子散射在高静静压下进行低密度脂蛋白

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Human low-density lipoprotein (LDL) is a highly complex nano-particle built up of various lipid classes and a single large protein moiety (apoB-100) owning essential physiological functions in the human body. Besides its vital role as a supplier of cholesterol and fat for peripheral tissues and cells, it is also a known key player in the formation of atherosclerosis. Due to these important roles in physiology and pathology the elucidation of structural and dynamical details is of great interest. In the current study we drew a broader picture of LDL dynamics using elastic incoherent neutron scattering (EINS) as a function of specified temperature and pressure points. We not only investigated a normolipidemic LDL sample, but also a triglyceride-rich and an oxidized one to mimic pathologic conditions as found under hyperlipidemic conditions or in atherosclerotic plaques, respectively. We could show that pressure has a significant effect on atomic motions in modified forms of LDL, whereas the normolipidemic sample seems to cope much better with high-pressure conditions irrespective of temperature. These findings might be explained by the altered lipid composition, which is either caused through elevated triglyceride content or modifications through lipid peroxidation.
机译:人低密度脂蛋白(LDL)是高度复合的纳米颗粒,其在各种脂质类别和人体中拥有必要的生理功能的单一大蛋白质部分(Apob-100)。除了作为外周组织和细胞的胆固醇和脂肪的供应商的重要作用,它还是一种已知的动脉粥样硬化的关键球员。由于生理学和病理学中的这些重要作用,结构和动态细节的阐明具有很大的兴趣。在目前的研究中,我们使用弹性不连贯中子散射(EINS)作为指定温度和压力点的函数,将LDL动态更广泛的LDL动态图像更广泛。我们不仅研究了摩洛糖尿病样品,而且还研究了富含甘油三酯和氧化的一种,分别在高脂质血症条件下或动脉粥样硬化斑块下发现的病理条件。我们可以表明压力对LDL的改性形式的原子动作具有显着影响,而常规血症样品似乎与温度无关,高压条件似乎更好地应对。这些发现可以通过改变的脂质组合物来解释,所述脂质组合物是通过通过脂质过氧化升高的甘油三酯含量或修饰而引起的。

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