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HDL structure and function is profoundly affected when stored frozen in the absence of cryoprotectants

Analysis of structural and functional parameters of HDL has gained significant momentum in recent years because they are stronger predictors of cardiovascular risk than HDL-cholesterol levels. Surprisingly, in most HDL studies, very low attention is paid to HDL storage, which might critically affect...

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Autores principales: Holzer, Michael, Kern, Sabine, Trieb, Markus, Trakaki, Athina, Marsche, Gunther
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Biochemistry and Molecular Biology 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5665661/
https://www.ncbi.nlm.nih.gov/pubmed/28893842
http://dx.doi.org/10.1194/jlr.D075366
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author Holzer, Michael
Kern, Sabine
Trieb, Markus
Trakaki, Athina
Marsche, Gunther
author_facet Holzer, Michael
Kern, Sabine
Trieb, Markus
Trakaki, Athina
Marsche, Gunther
author_sort Holzer, Michael
collection PubMed
description Analysis of structural and functional parameters of HDL has gained significant momentum in recent years because they are stronger predictors of cardiovascular risk than HDL-cholesterol levels. Surprisingly, in most HDL studies, very low attention is paid to HDL storage, which might critically affect functional properties. In the present study, we systematically examined the impact of storage and freezing on the structural/functional properties of freshly isolated HDL. Initial damage to HDL starts between week 1 and week 4 of storage. We observed that prolonged freezing at −20°C or −70°C led to a shedding of apoA-I from HDL and to the formation of large protein-poor particles, indicating that HDL is irreversibly disrupted. These structural alterations profoundly affected key metrics of HDL function, including HDL-cholesterol efflux capacity and HDL paraoxonase activity. Flash-freezing of isolated HDL prior to storage at −70°C did not preserve HDL structure. However, addition of the cryoprotectants, sucrose or glycerol, completely preserved structure and function of HDL when stored for at least 2 years. Our data clearly indicate that HDL is a complex particle requiring special attention when stored. Addition of cryoprotectants to isolated HDL samples before storage will make biochemical and clinical HDL research studies more reproducible and comparable.
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spelling pubmed-56656612017-12-01 HDL structure and function is profoundly affected when stored frozen in the absence of cryoprotectants Holzer, Michael Kern, Sabine Trieb, Markus Trakaki, Athina Marsche, Gunther J Lipid Res Methods Analysis of structural and functional parameters of HDL has gained significant momentum in recent years because they are stronger predictors of cardiovascular risk than HDL-cholesterol levels. Surprisingly, in most HDL studies, very low attention is paid to HDL storage, which might critically affect functional properties. In the present study, we systematically examined the impact of storage and freezing on the structural/functional properties of freshly isolated HDL. Initial damage to HDL starts between week 1 and week 4 of storage. We observed that prolonged freezing at −20°C or −70°C led to a shedding of apoA-I from HDL and to the formation of large protein-poor particles, indicating that HDL is irreversibly disrupted. These structural alterations profoundly affected key metrics of HDL function, including HDL-cholesterol efflux capacity and HDL paraoxonase activity. Flash-freezing of isolated HDL prior to storage at −70°C did not preserve HDL structure. However, addition of the cryoprotectants, sucrose or glycerol, completely preserved structure and function of HDL when stored for at least 2 years. Our data clearly indicate that HDL is a complex particle requiring special attention when stored. Addition of cryoprotectants to isolated HDL samples before storage will make biochemical and clinical HDL research studies more reproducible and comparable. The American Society for Biochemistry and Molecular Biology 2017-11 2017-09-11 /pmc/articles/PMC5665661/ /pubmed/28893842 http://dx.doi.org/10.1194/jlr.D075366 Text en Copyright © 2017 by the American Society for Biochemistry and Molecular Biology, Inc. http://creativecommons.org/licenses/by/4.0/ Author’s Choice—Final version free via Creative Commons CC-BY license.
spellingShingle Methods
Holzer, Michael
Kern, Sabine
Trieb, Markus
Trakaki, Athina
Marsche, Gunther
HDL structure and function is profoundly affected when stored frozen in the absence of cryoprotectants
title HDL structure and function is profoundly affected when stored frozen in the absence of cryoprotectants
title_full HDL structure and function is profoundly affected when stored frozen in the absence of cryoprotectants
title_fullStr HDL structure and function is profoundly affected when stored frozen in the absence of cryoprotectants
title_full_unstemmed HDL structure and function is profoundly affected when stored frozen in the absence of cryoprotectants
title_short HDL structure and function is profoundly affected when stored frozen in the absence of cryoprotectants
title_sort hdl structure and function is profoundly affected when stored frozen in the absence of cryoprotectants
topic Methods
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5665661/
https://www.ncbi.nlm.nih.gov/pubmed/28893842
http://dx.doi.org/10.1194/jlr.D075366
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