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A short-run new analytical ultracentrifugal micromethod for determining low-density lipoprotein sub-fractions using Schlieren refractometry

机译:一种使用Schlieren折光法测定低密度脂蛋白亚组分的短期新的分析超离心微方法

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摘要

We have developed a new analytical ultracentrifugal micromethod for the determination of serum low-density lipoprotein (LDL) subclasses directly from ultracentrifugal Schlieren scans. We have used special software for the analysis of this type of single-spin density-gradient ultracentrifugation. The flotation of LDL patterns was obtained by underlayering a physiological salt solution with serum or isolated lipoprotein fractions raised to a density of 1.3 g/mL in the spinning ultracentrifugation capillary band-forming cell. The repeated analysis of Schlieren curves of the same sample from 10 to 100 muL in the 60-100 min full-speed interval time resulted in quite reproducible results. We obtained quantitative results by measuring the Schlieren areas between the sample curves and the reference baseline curve by using computerised numerical and graphic techniques. The decomposition of the integrated curve was carried out using a nonlinear regression program followed by deconvolution algorithm analysis in order to determine the parameters of the composing Gaussian subclasses. The LDL particle concentrations were calculated from the area under the integral of the Gaussian curve using a calibration data constant. The flotation range of the LDL Schlieren curves in the cell was identified with serum from which LDL had been removed by means of precipitation reagents and with centrifugation of isolated LDL aliquots. With this technique, we measured the concentration of LDL and analysed its polydispersity without the need for preceding sequential isolation of the LDL. On the basis of the Schlieren curves, the LDL samples were either physically pauci- disperse, having a symmetrical peak within a narrow density range, or were polydisperse, showing an asymmetrical pattern distributed over a broader density region. The described method proved to be useful for a clear and immediate visual presentation of the concentration values of the LDL and for the identification of the heterogeneity of LDL variants without the need for the preparative isolation of that density class. [References: 20]
机译:我们已经开发了一种新的分析超离心微方法,用于直接从超离心Schlieren扫描确定血清低密度脂蛋白(LDL)亚类。我们已经使用特殊的软件来分析这种类型的单旋转密度梯度超速离心。 LDL模式的浮选是通过在生理盐溶液中添加血清或分离的脂蛋白组分,使其在旋转超速离心毛细管带形成细胞中密度升至1.3 g / mL的基础下获得的。在60-100分钟的全速间隔时间内,对10至100μL的同一样品的Schlieren曲线进行重复分析,得到了相当可重复的结果。通过使用计算机数字和图形技术测量样品曲线和参考基线之间的Schlieren区域,我们获得了定量结果。使用非线性回归程序对积分曲线进行分解,然后进行反卷积算法分析,以确定组成高斯子类的参数。使用校准数据常数从高斯曲线积分下的面积计算LDL颗粒浓度。 LDL Schlieren曲线在细胞中的浮选范围是用已经通过沉淀试剂去除了LDL的血清以及离心分离的LDL等分试样来确定的。使用这种技术,我们无需先对LDL进行顺序分离,即可测量LDL的浓度并分析其多分散性。根据Schlieren曲线,LDL样品要么是物理分散的,在较窄的密度范围内具有对称峰,要么是多分散的,显示出在较宽的密度区域分布的不对称图案。所描述的方法被证明可用于清晰,直观地直观显示LDL的浓度值,并且可用于LDL变体的异质性鉴定,而无需对该浓度类别进行制备性分离。 [参考:20]

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