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Short-Term Effects of Human versus Bovine Sialylated Milk Oligosaccharide Microinjection on Zebrafish Larvae Survival, Locomotor Behavior and Gene Expression

Milk oligosaccharides are a complex class of carbohydrates that act as bioactive factors in numerous defensive and physiological functions, including brain development. Early nutrition can modulate nervous system development and can lead to epigenetic imprinting. We attempted to increase the sialyla...

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Autores principales: Licitra, Rosario, Naef, Valentina, Marchese, Maria, Damiani, Devid, Ogi, Asahi, Doccini, Stefano, Fronte, Baldassare, Yan, Jingyu, Santorelli, Filippo M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10051688/
https://www.ncbi.nlm.nih.gov/pubmed/36982531
http://dx.doi.org/10.3390/ijms24065456
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author Licitra, Rosario
Naef, Valentina
Marchese, Maria
Damiani, Devid
Ogi, Asahi
Doccini, Stefano
Fronte, Baldassare
Yan, Jingyu
Santorelli, Filippo M.
author_facet Licitra, Rosario
Naef, Valentina
Marchese, Maria
Damiani, Devid
Ogi, Asahi
Doccini, Stefano
Fronte, Baldassare
Yan, Jingyu
Santorelli, Filippo M.
author_sort Licitra, Rosario
collection PubMed
description Milk oligosaccharides are a complex class of carbohydrates that act as bioactive factors in numerous defensive and physiological functions, including brain development. Early nutrition can modulate nervous system development and can lead to epigenetic imprinting. We attempted to increase the sialylated oligosaccharide content of zebrafish yolk reserves, with the aim of evaluating any short-term effects of the treatment on mortality, locomotor behavior, and gene expression. Wild-type embryos were microinjected with saline solution or solutions containing sialylated milk oligosaccharides extracted from human and bovine milk. The results suggest that burst activity and larval survival rates were unaffected by the treatments. Locomotion parameters were found to be similar during the light phase between control and treated larvae; in the dark, however, milk oligosaccharide-treated larvae showed increased test plate exploration. Thigmotaxis results did not reveal significant differences in either the light or the dark conditions. The RNA-seq analysis indicated that both treatments exert an antioxidant effect in developing fish. Moreover, sialylated human milk oligosaccharides seemed to increase the expression of genes related to cell cycle control and chromosomal replication, while bovine-derived oligosaccharides caused an increase in the expression of genes involved in synaptogenesis and neuronal signaling. These data shed some light on this poorly explored research field, showing that both human and bovine oligosaccharides support brain proliferation and maturation.
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spelling pubmed-100516882023-03-30 Short-Term Effects of Human versus Bovine Sialylated Milk Oligosaccharide Microinjection on Zebrafish Larvae Survival, Locomotor Behavior and Gene Expression Licitra, Rosario Naef, Valentina Marchese, Maria Damiani, Devid Ogi, Asahi Doccini, Stefano Fronte, Baldassare Yan, Jingyu Santorelli, Filippo M. Int J Mol Sci Article Milk oligosaccharides are a complex class of carbohydrates that act as bioactive factors in numerous defensive and physiological functions, including brain development. Early nutrition can modulate nervous system development and can lead to epigenetic imprinting. We attempted to increase the sialylated oligosaccharide content of zebrafish yolk reserves, with the aim of evaluating any short-term effects of the treatment on mortality, locomotor behavior, and gene expression. Wild-type embryos were microinjected with saline solution or solutions containing sialylated milk oligosaccharides extracted from human and bovine milk. The results suggest that burst activity and larval survival rates were unaffected by the treatments. Locomotion parameters were found to be similar during the light phase between control and treated larvae; in the dark, however, milk oligosaccharide-treated larvae showed increased test plate exploration. Thigmotaxis results did not reveal significant differences in either the light or the dark conditions. The RNA-seq analysis indicated that both treatments exert an antioxidant effect in developing fish. Moreover, sialylated human milk oligosaccharides seemed to increase the expression of genes related to cell cycle control and chromosomal replication, while bovine-derived oligosaccharides caused an increase in the expression of genes involved in synaptogenesis and neuronal signaling. These data shed some light on this poorly explored research field, showing that both human and bovine oligosaccharides support brain proliferation and maturation. MDPI 2023-03-13 /pmc/articles/PMC10051688/ /pubmed/36982531 http://dx.doi.org/10.3390/ijms24065456 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Licitra, Rosario
Naef, Valentina
Marchese, Maria
Damiani, Devid
Ogi, Asahi
Doccini, Stefano
Fronte, Baldassare
Yan, Jingyu
Santorelli, Filippo M.
Short-Term Effects of Human versus Bovine Sialylated Milk Oligosaccharide Microinjection on Zebrafish Larvae Survival, Locomotor Behavior and Gene Expression
title Short-Term Effects of Human versus Bovine Sialylated Milk Oligosaccharide Microinjection on Zebrafish Larvae Survival, Locomotor Behavior and Gene Expression
title_full Short-Term Effects of Human versus Bovine Sialylated Milk Oligosaccharide Microinjection on Zebrafish Larvae Survival, Locomotor Behavior and Gene Expression
title_fullStr Short-Term Effects of Human versus Bovine Sialylated Milk Oligosaccharide Microinjection on Zebrafish Larvae Survival, Locomotor Behavior and Gene Expression
title_full_unstemmed Short-Term Effects of Human versus Bovine Sialylated Milk Oligosaccharide Microinjection on Zebrafish Larvae Survival, Locomotor Behavior and Gene Expression
title_short Short-Term Effects of Human versus Bovine Sialylated Milk Oligosaccharide Microinjection on Zebrafish Larvae Survival, Locomotor Behavior and Gene Expression
title_sort short-term effects of human versus bovine sialylated milk oligosaccharide microinjection on zebrafish larvae survival, locomotor behavior and gene expression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10051688/
https://www.ncbi.nlm.nih.gov/pubmed/36982531
http://dx.doi.org/10.3390/ijms24065456
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