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Geometrical Separation Method for Lipoproteins Using Bioformulated-Fiber Matrix Electrophoresis: Size of High-Density Lipoprotein Does Not Reflect Its Density

机译:脂蛋白的几何分离方法使用生物制剂纤维基质电泳:高密度脂蛋白的大小不能反映其密度

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摘要

The increasing number of patients with metabolic syndrome is a critical global problem. In this study, we describe a novel geometrical electrophoretic separation method using a bioformulated-fiber matrix to analyze high-density lipoprotein (HDL) particles. HDL particles are generally considered to be a beneficial component of the cholesterol fraction. Conventional electrophoresis is widely used but is not necessarily suitable for analyzing HDL particles. Furthermore, a higher HDL density is generally believed to correlate with a smaller particle size. Here, we use a novel geometrical separation technique incorporating recently developed nanotechnology (Nata de Coco) to contradict this belief. A dyslipidemia patient given a 1-month treatment of fenofibrate showed an inverse relationship between HDL density and size. Direct microscopic observation and morphological observation of fractionated HDL particles confirmed a lack of relationship between particle density and size. This new technique may improve diagnostic accuracy and medical treatment for lipid related diseases.
机译:代谢综合症患者的数量增加是一个关键的全球性问题。在这项研究中,我们描述了一种使用生物制剂纤维基质分析高密度脂蛋白(HDL)颗粒的新型几何电泳分离方法。 HDL颗粒通常被认为是胆固醇部分的有益成分。常规电泳被广泛使用,但不一定适合于分析HDL颗粒。此外,通常认为较高的HDL密度与较小的粒度有关。在这里,我们使用一种结合了最近开发的纳米技术(Nata de Coco)的新颖的几何分离技术来违背这一信念。接受非诺贝特1个月治疗的血脂异常患者显示HDL密度与大小呈反比关系。分级HDL颗粒的直接显微镜观察和形态学观察证实了颗粒密度和尺寸之间缺乏联系。这项新技术可以提高脂质相关疾病的诊断准确性和药物治疗。

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