Rapid quantitative apolipoprotein analysis by gradient ultracentrifugation and reversed-phase high performance liquid chromatography.

A new methodology for the analysis of lipoprotein composition using a combination of gradient ultracentrifugation and high performance liquid chromatography was used to determine the differences in lipoprotein composition between non-hyperlipidemic men and women. Lipoproteins from each subject were...

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Main Authors: T A Hughes, M A Moore, P Neame, M F Medley, B H Chung
Format: Article
Language:English
Published: Elsevier 1988-03-01
Series:Journal of Lipid Research
Online Access:http://www.sciencedirect.com/science/article/pii/S0022227520385412
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spelling doaj-779a80866fb74f6e9f8ad8a4865ce7282021-04-25T04:19:45ZengElsevierJournal of Lipid Research0022-22751988-03-01293363376Rapid quantitative apolipoprotein analysis by gradient ultracentrifugation and reversed-phase high performance liquid chromatography.T A Hughes0M A Moore1P Neame2M F Medley3B H Chung4Department of Medicine, University of Alabama, Birmingham.Department of Medicine, University of Alabama, Birmingham.Department of Medicine, University of Alabama, Birmingham.Department of Medicine, University of Alabama, Birmingham.Department of Medicine, University of Alabama, Birmingham.A new methodology for the analysis of lipoprotein composition using a combination of gradient ultracentrifugation and high performance liquid chromatography was used to determine the differences in lipoprotein composition between non-hyperlipidemic men and women. Lipoproteins from each subject were separated into six subfractions: VLDL, IDL, LDL, and three subfractions of HDL by a single gradient ultracentrifugation spin of less than 5 hr. The HDL subfractions were designated HDL-L (the lightest density subfraction, rich in apoCs and poor in apoA-II), HDL-M (the middle subfraction, rich in apoA-II), and HDL-D (the most dense, relatively poor in both the apoCs and apoA-II). The concentrations of the water-soluble apolipoproteins in each subfraction were determined using reversed-phase HPLC. The concentrations of apoB and the lipid components of the lipoproteins were determined by chemical and enzymatic methods. This methodology proved to be highly reproducible when performed on fresh plasma samples and we were able to identify many sex-associated differences in lipoprotein composition. This methodology is the only nonimmunological technique available for analyzing lipoprotein composition that offers such a combination of accuracy, speed, and completeness.http://www.sciencedirect.com/science/article/pii/S0022227520385412
collection DOAJ
language English
format Article
sources DOAJ
author T A Hughes
M A Moore
P Neame
M F Medley
B H Chung
spellingShingle T A Hughes
M A Moore
P Neame
M F Medley
B H Chung
Rapid quantitative apolipoprotein analysis by gradient ultracentrifugation and reversed-phase high performance liquid chromatography.
Journal of Lipid Research
author_facet T A Hughes
M A Moore
P Neame
M F Medley
B H Chung
author_sort T A Hughes
title Rapid quantitative apolipoprotein analysis by gradient ultracentrifugation and reversed-phase high performance liquid chromatography.
title_short Rapid quantitative apolipoprotein analysis by gradient ultracentrifugation and reversed-phase high performance liquid chromatography.
title_full Rapid quantitative apolipoprotein analysis by gradient ultracentrifugation and reversed-phase high performance liquid chromatography.
title_fullStr Rapid quantitative apolipoprotein analysis by gradient ultracentrifugation and reversed-phase high performance liquid chromatography.
title_full_unstemmed Rapid quantitative apolipoprotein analysis by gradient ultracentrifugation and reversed-phase high performance liquid chromatography.
title_sort rapid quantitative apolipoprotein analysis by gradient ultracentrifugation and reversed-phase high performance liquid chromatography.
publisher Elsevier
series Journal of Lipid Research
issn 0022-2275
publishDate 1988-03-01
description A new methodology for the analysis of lipoprotein composition using a combination of gradient ultracentrifugation and high performance liquid chromatography was used to determine the differences in lipoprotein composition between non-hyperlipidemic men and women. Lipoproteins from each subject were separated into six subfractions: VLDL, IDL, LDL, and three subfractions of HDL by a single gradient ultracentrifugation spin of less than 5 hr. The HDL subfractions were designated HDL-L (the lightest density subfraction, rich in apoCs and poor in apoA-II), HDL-M (the middle subfraction, rich in apoA-II), and HDL-D (the most dense, relatively poor in both the apoCs and apoA-II). The concentrations of the water-soluble apolipoproteins in each subfraction were determined using reversed-phase HPLC. The concentrations of apoB and the lipid components of the lipoproteins were determined by chemical and enzymatic methods. This methodology proved to be highly reproducible when performed on fresh plasma samples and we were able to identify many sex-associated differences in lipoprotein composition. This methodology is the only nonimmunological technique available for analyzing lipoprotein composition that offers such a combination of accuracy, speed, and completeness.
url http://www.sciencedirect.com/science/article/pii/S0022227520385412
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AT mamoore rapidquantitativeapolipoproteinanalysisbygradientultracentrifugationandreversedphasehighperformanceliquidchromatography
AT pneame rapidquantitativeapolipoproteinanalysisbygradientultracentrifugationandreversedphasehighperformanceliquidchromatography
AT mfmedley rapidquantitativeapolipoproteinanalysisbygradientultracentrifugationandreversedphasehighperformanceliquidchromatography
AT bhchung rapidquantitativeapolipoproteinanalysisbygradientultracentrifugationandreversedphasehighperformanceliquidchromatography
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