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Facile Chemoselective Strategy toward Capturing Sphingoid Bases by a Unique Glutaraldehyde-Functionalized Resin

[Image: see text] Sphingoid bases, which have a 2-amino-1,3-diol common functional group, are the structural backbone units of all sphingolipids. Recently, much attention has been focused on sphingoid bases because of their potentially beneficial bioactivities toward various cancer cells as well as...

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Autores principales: Gowda, Siddabasave Gowda B., Nakahashi, Atsufumi, Yamane, Keiko, Nakahashi, Saori, Murai, Yuta, Siddegowda, Ananda Kumar C., Hammam, Mostafa A. S., Monde, Kenji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2018
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6044895/
https://www.ncbi.nlm.nih.gov/pubmed/30023788
http://dx.doi.org/10.1021/acsomega.7b01440
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author Gowda, Siddabasave Gowda B.
Nakahashi, Atsufumi
Yamane, Keiko
Nakahashi, Saori
Murai, Yuta
Siddegowda, Ananda Kumar C.
Hammam, Mostafa A. S.
Monde, Kenji
author_facet Gowda, Siddabasave Gowda B.
Nakahashi, Atsufumi
Yamane, Keiko
Nakahashi, Saori
Murai, Yuta
Siddegowda, Ananda Kumar C.
Hammam, Mostafa A. S.
Monde, Kenji
author_sort Gowda, Siddabasave Gowda B.
collection PubMed
description [Image: see text] Sphingoid bases, which have a 2-amino-1,3-diol common functional group, are the structural backbone units of all sphingolipids. Recently, much attention has been focused on sphingoid bases because of their potentially beneficial bioactivities toward various cancer cells as well as their dietary interest. However, low abundance and the handling complexity caused by their amphiphilic character led to very limited research on them. Glutaraldehyde has two aldehyde groups, and it reacts rapidly with the 2-amino-1,3-diol functional group of sphingosine to give a tricyclic product. Immobilization of glutaraldehyde on a resin was successfully performed by organic synthesis, starting from trans-p-coumaric acid via eight steps. This approach suppresses the self-polymerization of glutaraldehyde, and addition of water to the developed resin causes the formation of cyclic double hemiacetal function, which avoids oxidation like a reducing sugar in nature and makes it stable even for up to 1 year incubation. The resin was applied to the solid-phase extracting experiment of free sphingosine from human serum at a concentration of 280 nM. Another extraction study of edible golden oyster mushrooms showed that the sphingoid base was selectively captured from complex natural extracts. These results demonstrate that the developed glutaraldehyde resin method is a highly selective method, and hence, the combination of it with the o-phthaldialdehyde HPLC method was confirmed as an efficient and sensitive method for analysis of sphingoid bases in biological samples.
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spelling pubmed-60448952018-07-16 Facile Chemoselective Strategy toward Capturing Sphingoid Bases by a Unique Glutaraldehyde-Functionalized Resin Gowda, Siddabasave Gowda B. Nakahashi, Atsufumi Yamane, Keiko Nakahashi, Saori Murai, Yuta Siddegowda, Ananda Kumar C. Hammam, Mostafa A. S. Monde, Kenji ACS Omega [Image: see text] Sphingoid bases, which have a 2-amino-1,3-diol common functional group, are the structural backbone units of all sphingolipids. Recently, much attention has been focused on sphingoid bases because of their potentially beneficial bioactivities toward various cancer cells as well as their dietary interest. However, low abundance and the handling complexity caused by their amphiphilic character led to very limited research on them. Glutaraldehyde has two aldehyde groups, and it reacts rapidly with the 2-amino-1,3-diol functional group of sphingosine to give a tricyclic product. Immobilization of glutaraldehyde on a resin was successfully performed by organic synthesis, starting from trans-p-coumaric acid via eight steps. This approach suppresses the self-polymerization of glutaraldehyde, and addition of water to the developed resin causes the formation of cyclic double hemiacetal function, which avoids oxidation like a reducing sugar in nature and makes it stable even for up to 1 year incubation. The resin was applied to the solid-phase extracting experiment of free sphingosine from human serum at a concentration of 280 nM. Another extraction study of edible golden oyster mushrooms showed that the sphingoid base was selectively captured from complex natural extracts. These results demonstrate that the developed glutaraldehyde resin method is a highly selective method, and hence, the combination of it with the o-phthaldialdehyde HPLC method was confirmed as an efficient and sensitive method for analysis of sphingoid bases in biological samples. American Chemical Society 2018-01-22 /pmc/articles/PMC6044895/ /pubmed/30023788 http://dx.doi.org/10.1021/acsomega.7b01440 Text en Copyright © 2018 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Gowda, Siddabasave Gowda B.
Nakahashi, Atsufumi
Yamane, Keiko
Nakahashi, Saori
Murai, Yuta
Siddegowda, Ananda Kumar C.
Hammam, Mostafa A. S.
Monde, Kenji
Facile Chemoselective Strategy toward Capturing Sphingoid Bases by a Unique Glutaraldehyde-Functionalized Resin
title Facile Chemoselective Strategy toward Capturing Sphingoid Bases by a Unique Glutaraldehyde-Functionalized Resin
title_full Facile Chemoselective Strategy toward Capturing Sphingoid Bases by a Unique Glutaraldehyde-Functionalized Resin
title_fullStr Facile Chemoselective Strategy toward Capturing Sphingoid Bases by a Unique Glutaraldehyde-Functionalized Resin
title_full_unstemmed Facile Chemoselective Strategy toward Capturing Sphingoid Bases by a Unique Glutaraldehyde-Functionalized Resin
title_short Facile Chemoselective Strategy toward Capturing Sphingoid Bases by a Unique Glutaraldehyde-Functionalized Resin
title_sort facile chemoselective strategy toward capturing sphingoid bases by a unique glutaraldehyde-functionalized resin
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6044895/
https://www.ncbi.nlm.nih.gov/pubmed/30023788
http://dx.doi.org/10.1021/acsomega.7b01440
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