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使用Iatroscan TH - 10分析仪对人类胆囊胆汁中多种样本类型和脂质类别中的总脂质进行定量分析。

The use of the Iatroscan TH-10 analyzer to quantify total lipids in a variety of sample types and lipid classes in human gallbladder bile.

作者信息

Harvey H R, Rigler M W, Patton J S

出版信息

Lipids. 1985 Aug;20(8):542-5. doi: 10.1007/BF02534896.

Abstract

Two methods for the measurement of total lipid weight in biological and geological samples and the major lipid classes in human gallbladder bile using the Iatroscan TH-10 analyzer are described. Total lipid determination involves the application of small (5 microliter) volumes to Chromarods, focusing of the sample into one band by partial development in chloroform-methanol (1:1), and quantification by flame ionization detection (FID). The response variation between different sample types did not affect the linearity of response, allowing a reproducibility of +/- 10% of the mean or better for samples ranging from 0.5 to 32 micrograms. Total lipid determinations in 10 samples could be performed in 30 min. The three major components of human gallbladder bile (cholesterol, phospholipids and bile acids) also were quantified with the Iatroscan. Samples focused on Chromarods were separated using a double development scheme in two solvent systems. All three components exhibited a linear response over the range of 0.25 to 8 micrograms. The repeated scanning of rods required at concentrations greater than 3 micrograms did not affect linearity of response. Samples from 10 patients could be processed in less than one hr. Several techniques are discussed to increase reproducibility when performing quantitative lipid analysis with the Iatroscan.

摘要

本文描述了使用Iatroscan TH - 10分析仪测量生物和地质样品中总脂质重量以及人胆囊胆汁中主要脂质类别的两种方法。总脂质测定包括将小体积(5微升)样品应用于色谱棒,通过在氯仿 - 甲醇(1:1)中部分展开将样品聚焦成一条带,并通过火焰离子化检测(FID)进行定量。不同样品类型之间的响应变化不影响响应的线性,对于0.5至32微克的样品,平均响应的再现性可达±10%或更好。10个样品的总脂质测定可在30分钟内完成。人胆囊胆汁的三种主要成分(胆固醇、磷脂和胆汁酸)也用Iatroscan进行了定量。聚焦在色谱棒上的样品在两种溶剂系统中采用双重展开方案进行分离。所有三种成分在0.25至8微克范围内均表现出线性响应。浓度大于3微克时所需的色谱棒重复扫描不影响响应的线性。10名患者的样品可在不到一小时内处理完毕。文中讨论了几种在使用Iatroscan进行定量脂质分析时提高再现性的技术。

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