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Rapid, Reproducible, Quantifiable NMR Metabolomics: Methanol and Methanol: Chloroform Precipitation for Removal of Macromolecules in Serum and Whole Blood

Background: Though blood is an excellent biofluid for metabolomics, proteins and lipids present in blood can interfere with 1d-(1)H NMR spectra and disrupt quantification of metabolites. Here, we present effective macromolecule removal strategies for serum and whole blood (WB) samples. Methods: A va...

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Autores principales: McHugh, Cora E., Flott, Thomas L., Schooff, Casey R., Smiley, Zyad, Puskarich, Michael A., Myers, Daniel D., Younger, John G., Jones, Alan E., Stringer, Kathleen A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6316042/
https://www.ncbi.nlm.nih.gov/pubmed/30558115
http://dx.doi.org/10.3390/metabo8040093
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author McHugh, Cora E.
Flott, Thomas L.
Schooff, Casey R.
Smiley, Zyad
Puskarich, Michael A.
Myers, Daniel D.
Younger, John G.
Jones, Alan E.
Stringer, Kathleen A.
author_facet McHugh, Cora E.
Flott, Thomas L.
Schooff, Casey R.
Smiley, Zyad
Puskarich, Michael A.
Myers, Daniel D.
Younger, John G.
Jones, Alan E.
Stringer, Kathleen A.
author_sort McHugh, Cora E.
collection PubMed
description Background: Though blood is an excellent biofluid for metabolomics, proteins and lipids present in blood can interfere with 1d-(1)H NMR spectra and disrupt quantification of metabolites. Here, we present effective macromolecule removal strategies for serum and whole blood (WB) samples. Methods: A variety of macromolecule removal strategies were compared in both WB and serum, along with tests of ultrafiltration alone and in combination with precipitation methods. Results: In healthy human serum, methanol:chloroform:water extraction with ultrafiltration was compared to methanol precipitation with and without ultrafiltration. Methods were tested in healthy pooled human serum, and in serum from patients with sepsis. Effects of long-term storage at −80 °C were tested to explore the impact of macromolecule removal strategy on serum from different conditions. In WB a variety of extraction strategies were tested in two types of WB (from pigs and baboons) to examine the impact of macromolecule removal strategies on different samples. Conclusions: In healthy human serum methanol precipitation of serum with ultrafiltration was superior, but was similar in recovery and variance to methanol:chloroform:water extraction with ultrafiltration in pooled serum from patients with sepsis. In WB, high quality, quantifiable spectra were obtained with the use of a methanol: chloroform precipitation.
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spelling pubmed-63160422019-01-10 Rapid, Reproducible, Quantifiable NMR Metabolomics: Methanol and Methanol: Chloroform Precipitation for Removal of Macromolecules in Serum and Whole Blood McHugh, Cora E. Flott, Thomas L. Schooff, Casey R. Smiley, Zyad Puskarich, Michael A. Myers, Daniel D. Younger, John G. Jones, Alan E. Stringer, Kathleen A. Metabolites Article Background: Though blood is an excellent biofluid for metabolomics, proteins and lipids present in blood can interfere with 1d-(1)H NMR spectra and disrupt quantification of metabolites. Here, we present effective macromolecule removal strategies for serum and whole blood (WB) samples. Methods: A variety of macromolecule removal strategies were compared in both WB and serum, along with tests of ultrafiltration alone and in combination with precipitation methods. Results: In healthy human serum, methanol:chloroform:water extraction with ultrafiltration was compared to methanol precipitation with and without ultrafiltration. Methods were tested in healthy pooled human serum, and in serum from patients with sepsis. Effects of long-term storage at −80 °C were tested to explore the impact of macromolecule removal strategy on serum from different conditions. In WB a variety of extraction strategies were tested in two types of WB (from pigs and baboons) to examine the impact of macromolecule removal strategies on different samples. Conclusions: In healthy human serum methanol precipitation of serum with ultrafiltration was superior, but was similar in recovery and variance to methanol:chloroform:water extraction with ultrafiltration in pooled serum from patients with sepsis. In WB, high quality, quantifiable spectra were obtained with the use of a methanol: chloroform precipitation. MDPI 2018-12-14 /pmc/articles/PMC6316042/ /pubmed/30558115 http://dx.doi.org/10.3390/metabo8040093 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
McHugh, Cora E.
Flott, Thomas L.
Schooff, Casey R.
Smiley, Zyad
Puskarich, Michael A.
Myers, Daniel D.
Younger, John G.
Jones, Alan E.
Stringer, Kathleen A.
Rapid, Reproducible, Quantifiable NMR Metabolomics: Methanol and Methanol: Chloroform Precipitation for Removal of Macromolecules in Serum and Whole Blood
title Rapid, Reproducible, Quantifiable NMR Metabolomics: Methanol and Methanol: Chloroform Precipitation for Removal of Macromolecules in Serum and Whole Blood
title_full Rapid, Reproducible, Quantifiable NMR Metabolomics: Methanol and Methanol: Chloroform Precipitation for Removal of Macromolecules in Serum and Whole Blood
title_fullStr Rapid, Reproducible, Quantifiable NMR Metabolomics: Methanol and Methanol: Chloroform Precipitation for Removal of Macromolecules in Serum and Whole Blood
title_full_unstemmed Rapid, Reproducible, Quantifiable NMR Metabolomics: Methanol and Methanol: Chloroform Precipitation for Removal of Macromolecules in Serum and Whole Blood
title_short Rapid, Reproducible, Quantifiable NMR Metabolomics: Methanol and Methanol: Chloroform Precipitation for Removal of Macromolecules in Serum and Whole Blood
title_sort rapid, reproducible, quantifiable nmr metabolomics: methanol and methanol: chloroform precipitation for removal of macromolecules in serum and whole blood
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6316042/
https://www.ncbi.nlm.nih.gov/pubmed/30558115
http://dx.doi.org/10.3390/metabo8040093
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