Cargando…

The Milk Metabolome of Non-secretor and Lewis Negative Mothers

Introduction: The functional role of milk for the developing neonate is an area of great interest, and a significant amount of research has been done. However, a lot of work remains to fully understand the complexities of milk, and the variations imposed through genetics. It has previously been show...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Aidong, Koleva, Petya, du Toit, Elloise, Geddes, Donna T., Munblit, Daniel, Prescott, Susan L., Eggesbø, Merete, Johnson, Christine C., Wegienka, Ganesa, Shimojo, Naoki, Campbell, Dianne, Kozyrskyj, Anita L., Slupsky, Carolyn M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7901958/
https://www.ncbi.nlm.nih.gov/pubmed/33634158
http://dx.doi.org/10.3389/fnut.2020.576966
_version_ 1783654461889052672
author Wang, Aidong
Koleva, Petya
du Toit, Elloise
Geddes, Donna T.
Munblit, Daniel
Prescott, Susan L.
Eggesbø, Merete
Johnson, Christine C.
Wegienka, Ganesa
Shimojo, Naoki
Campbell, Dianne
Kozyrskyj, Anita L.
Slupsky, Carolyn M.
author_facet Wang, Aidong
Koleva, Petya
du Toit, Elloise
Geddes, Donna T.
Munblit, Daniel
Prescott, Susan L.
Eggesbø, Merete
Johnson, Christine C.
Wegienka, Ganesa
Shimojo, Naoki
Campbell, Dianne
Kozyrskyj, Anita L.
Slupsky, Carolyn M.
author_sort Wang, Aidong
collection PubMed
description Introduction: The functional role of milk for the developing neonate is an area of great interest, and a significant amount of research has been done. However, a lot of work remains to fully understand the complexities of milk, and the variations imposed through genetics. It has previously been shown that both secretor (Se) and Lewis blood type (Le) status impacts the human milk oligosaccharide (HMO) content of human milk. While some studies have compared the non-HMO milk metabolome of Se+ and Se− women, none have reported on the non-HMO milk metabolome of Se− and Le– mothers. Method and Results: To determine the differences in the non-HMO milk metabolome between Se–Le– mothers and other HMO phenotypes (Se+Le+, Se+Le–, and Se–Le+), 10 milk samples from 10 lactating mothers were analyzed using nuclear magnetic resonance (NMR) spectroscopy. Se or Le HMO phenotypes were assigned based on the presence and absence of 6 HMOs generated by the Se and Le genes. After classification, 58 milk metabolites were compared among the HMO phenotypes. Principal component analysis (PCA) identified clear separation between Se–Le– milk and the other milks. Fold change analysis demonstrated that the Se–Le– milk had major differences in free fatty acids, free amino acids, and metabolites related to energy metabolism. Conclusion: The results of this brief research report suggest that the milk metabolome of mothers with the Se–Le– phenotype differs in its non-HMO metabolite composition from mothers with other HMO phenotypes.
format Online
Article
Text
id pubmed-7901958
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-79019582021-02-24 The Milk Metabolome of Non-secretor and Lewis Negative Mothers Wang, Aidong Koleva, Petya du Toit, Elloise Geddes, Donna T. Munblit, Daniel Prescott, Susan L. Eggesbø, Merete Johnson, Christine C. Wegienka, Ganesa Shimojo, Naoki Campbell, Dianne Kozyrskyj, Anita L. Slupsky, Carolyn M. Front Nutr Nutrition Introduction: The functional role of milk for the developing neonate is an area of great interest, and a significant amount of research has been done. However, a lot of work remains to fully understand the complexities of milk, and the variations imposed through genetics. It has previously been shown that both secretor (Se) and Lewis blood type (Le) status impacts the human milk oligosaccharide (HMO) content of human milk. While some studies have compared the non-HMO milk metabolome of Se+ and Se− women, none have reported on the non-HMO milk metabolome of Se− and Le– mothers. Method and Results: To determine the differences in the non-HMO milk metabolome between Se–Le– mothers and other HMO phenotypes (Se+Le+, Se+Le–, and Se–Le+), 10 milk samples from 10 lactating mothers were analyzed using nuclear magnetic resonance (NMR) spectroscopy. Se or Le HMO phenotypes were assigned based on the presence and absence of 6 HMOs generated by the Se and Le genes. After classification, 58 milk metabolites were compared among the HMO phenotypes. Principal component analysis (PCA) identified clear separation between Se–Le– milk and the other milks. Fold change analysis demonstrated that the Se–Le– milk had major differences in free fatty acids, free amino acids, and metabolites related to energy metabolism. Conclusion: The results of this brief research report suggest that the milk metabolome of mothers with the Se–Le– phenotype differs in its non-HMO metabolite composition from mothers with other HMO phenotypes. Frontiers Media S.A. 2021-02-02 /pmc/articles/PMC7901958/ /pubmed/33634158 http://dx.doi.org/10.3389/fnut.2020.576966 Text en Copyright © 2021 Wang, Koleva, du Toit, Geddes, Munblit, Prescott, Eggesbø, Johnson, Wegienka, Shimojo, Campbell, Kozyrskyj and Slupsky. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Nutrition
Wang, Aidong
Koleva, Petya
du Toit, Elloise
Geddes, Donna T.
Munblit, Daniel
Prescott, Susan L.
Eggesbø, Merete
Johnson, Christine C.
Wegienka, Ganesa
Shimojo, Naoki
Campbell, Dianne
Kozyrskyj, Anita L.
Slupsky, Carolyn M.
The Milk Metabolome of Non-secretor and Lewis Negative Mothers
title The Milk Metabolome of Non-secretor and Lewis Negative Mothers
title_full The Milk Metabolome of Non-secretor and Lewis Negative Mothers
title_fullStr The Milk Metabolome of Non-secretor and Lewis Negative Mothers
title_full_unstemmed The Milk Metabolome of Non-secretor and Lewis Negative Mothers
title_short The Milk Metabolome of Non-secretor and Lewis Negative Mothers
title_sort milk metabolome of non-secretor and lewis negative mothers
topic Nutrition
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7901958/
https://www.ncbi.nlm.nih.gov/pubmed/33634158
http://dx.doi.org/10.3389/fnut.2020.576966
work_keys_str_mv AT wangaidong themilkmetabolomeofnonsecretorandlewisnegativemothers
AT kolevapetya themilkmetabolomeofnonsecretorandlewisnegativemothers
AT dutoitelloise themilkmetabolomeofnonsecretorandlewisnegativemothers
AT geddesdonnat themilkmetabolomeofnonsecretorandlewisnegativemothers
AT munblitdaniel themilkmetabolomeofnonsecretorandlewisnegativemothers
AT prescottsusanl themilkmetabolomeofnonsecretorandlewisnegativemothers
AT eggesbømerete themilkmetabolomeofnonsecretorandlewisnegativemothers
AT johnsonchristinec themilkmetabolomeofnonsecretorandlewisnegativemothers
AT wegienkaganesa themilkmetabolomeofnonsecretorandlewisnegativemothers
AT shimojonaoki themilkmetabolomeofnonsecretorandlewisnegativemothers
AT campbelldianne themilkmetabolomeofnonsecretorandlewisnegativemothers
AT kozyrskyjanital themilkmetabolomeofnonsecretorandlewisnegativemothers
AT slupskycarolynm themilkmetabolomeofnonsecretorandlewisnegativemothers
AT wangaidong milkmetabolomeofnonsecretorandlewisnegativemothers
AT kolevapetya milkmetabolomeofnonsecretorandlewisnegativemothers
AT dutoitelloise milkmetabolomeofnonsecretorandlewisnegativemothers
AT geddesdonnat milkmetabolomeofnonsecretorandlewisnegativemothers
AT munblitdaniel milkmetabolomeofnonsecretorandlewisnegativemothers
AT prescottsusanl milkmetabolomeofnonsecretorandlewisnegativemothers
AT eggesbømerete milkmetabolomeofnonsecretorandlewisnegativemothers
AT johnsonchristinec milkmetabolomeofnonsecretorandlewisnegativemothers
AT wegienkaganesa milkmetabolomeofnonsecretorandlewisnegativemothers
AT shimojonaoki milkmetabolomeofnonsecretorandlewisnegativemothers
AT campbelldianne milkmetabolomeofnonsecretorandlewisnegativemothers
AT kozyrskyjanital milkmetabolomeofnonsecretorandlewisnegativemothers
AT slupskycarolynm milkmetabolomeofnonsecretorandlewisnegativemothers