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Effects of Two Types of Melatonin-Loaded Nanocapsules with Distinct Supramolecular Structures: Polymeric (NC) and Lipid-Core Nanocapsules (LNC) on Bovine Embryo Culture Model
Melatonin has been used as a supplement in culture medium to improve the efficiency of in vitro produced mammalian embryos. Through its ability to scavenge toxic oxygen derivatives and regulate cellular mRNA levels for antioxidant enzymes, this molecule has been shown to play a protective role again...
Autores principales: | , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2016
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4910990/ https://www.ncbi.nlm.nih.gov/pubmed/27310006 http://dx.doi.org/10.1371/journal.pone.0157561 |
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author | Komninou, Eliza Rossi Remião, Mariana Härter Lucas, Caroline Gomes Domingues, William Borges Basso, Andrea Cristina Jornada, Denise Soledade Deschamps, João Carlos Beck, Ruy Carlos Ruver Pohlmann, Adriana Raffin Bordignon, Vilceu Seixas, Fabiana Kömmling Campos, Vinicius Farias Guterres, Silvia Stanisçuaski Collares, Tiago |
author_facet | Komninou, Eliza Rossi Remião, Mariana Härter Lucas, Caroline Gomes Domingues, William Borges Basso, Andrea Cristina Jornada, Denise Soledade Deschamps, João Carlos Beck, Ruy Carlos Ruver Pohlmann, Adriana Raffin Bordignon, Vilceu Seixas, Fabiana Kömmling Campos, Vinicius Farias Guterres, Silvia Stanisçuaski Collares, Tiago |
author_sort | Komninou, Eliza Rossi |
collection | PubMed |
description | Melatonin has been used as a supplement in culture medium to improve the efficiency of in vitro produced mammalian embryos. Through its ability to scavenge toxic oxygen derivatives and regulate cellular mRNA levels for antioxidant enzymes, this molecule has been shown to play a protective role against damage by free radicals, to which in vitro cultured embryos are exposed during early development. In vivo and in vitro studies have been performed showing that the use of nanocapsules as active substances carriers increases stability, bioavailability and biodistribution of drugs, such as melatonin, to the cells and tissues, improving their antioxidant properties. These properties can be modulated through the manipulation of formula composition, especially in relation to the supramolecular structures of the nanocapsule core and the surface area that greatly influences drug release mechanisms in biological environments. This study aimed to evaluate the effects of two types of melatonin-loaded nanocapsules with distinct supramolecular structures, polymeric (NC) and lipid-core (LNC) nanocapsules, on in vitro cultured bovine embryos. Embryonic development, apoptosis, reactive oxygen species (ROS) production, and mRNA levels of genes involved in cell apoptosis, ROS and cell pluripotency were evaluated after supplementation of culture medium with non-encapsulated melatonin (Mel), melatonin-loaded polymeric nanocapsules (Mel-NC) and melatonin-loaded lipid-core nanocapsules (Mel-LNC) at 10(−6), 10(−9), and 10(−12) M drug concentrations. The highest hatching rate was observed in embryos treated with 10(−9) M Mel-LNC. When compared to Mel and Mel-NC treatments at the same concentration (10(−9) M), Mel-LNC increased embryo cell number, decreased cell apoptosis and ROS levels, down-regulated mRNA levels of BAX, CASP3, and SHC1 genes, and up-regulated mRNA levels of CAT and SOD2 genes. These findings indicate that nanoencapsulation with LNC increases the protective effects of melatonin against oxidative stress and cell apoptosis during in vitro embryo culture in bovine species. |
format | Online Article Text |
id | pubmed-4910990 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-49109902016-07-06 Effects of Two Types of Melatonin-Loaded Nanocapsules with Distinct Supramolecular Structures: Polymeric (NC) and Lipid-Core Nanocapsules (LNC) on Bovine Embryo Culture Model Komninou, Eliza Rossi Remião, Mariana Härter Lucas, Caroline Gomes Domingues, William Borges Basso, Andrea Cristina Jornada, Denise Soledade Deschamps, João Carlos Beck, Ruy Carlos Ruver Pohlmann, Adriana Raffin Bordignon, Vilceu Seixas, Fabiana Kömmling Campos, Vinicius Farias Guterres, Silvia Stanisçuaski Collares, Tiago PLoS One Research Article Melatonin has been used as a supplement in culture medium to improve the efficiency of in vitro produced mammalian embryos. Through its ability to scavenge toxic oxygen derivatives and regulate cellular mRNA levels for antioxidant enzymes, this molecule has been shown to play a protective role against damage by free radicals, to which in vitro cultured embryos are exposed during early development. In vivo and in vitro studies have been performed showing that the use of nanocapsules as active substances carriers increases stability, bioavailability and biodistribution of drugs, such as melatonin, to the cells and tissues, improving their antioxidant properties. These properties can be modulated through the manipulation of formula composition, especially in relation to the supramolecular structures of the nanocapsule core and the surface area that greatly influences drug release mechanisms in biological environments. This study aimed to evaluate the effects of two types of melatonin-loaded nanocapsules with distinct supramolecular structures, polymeric (NC) and lipid-core (LNC) nanocapsules, on in vitro cultured bovine embryos. Embryonic development, apoptosis, reactive oxygen species (ROS) production, and mRNA levels of genes involved in cell apoptosis, ROS and cell pluripotency were evaluated after supplementation of culture medium with non-encapsulated melatonin (Mel), melatonin-loaded polymeric nanocapsules (Mel-NC) and melatonin-loaded lipid-core nanocapsules (Mel-LNC) at 10(−6), 10(−9), and 10(−12) M drug concentrations. The highest hatching rate was observed in embryos treated with 10(−9) M Mel-LNC. When compared to Mel and Mel-NC treatments at the same concentration (10(−9) M), Mel-LNC increased embryo cell number, decreased cell apoptosis and ROS levels, down-regulated mRNA levels of BAX, CASP3, and SHC1 genes, and up-regulated mRNA levels of CAT and SOD2 genes. These findings indicate that nanoencapsulation with LNC increases the protective effects of melatonin against oxidative stress and cell apoptosis during in vitro embryo culture in bovine species. Public Library of Science 2016-06-16 /pmc/articles/PMC4910990/ /pubmed/27310006 http://dx.doi.org/10.1371/journal.pone.0157561 Text en © 2016 Komninou et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Research Article Komninou, Eliza Rossi Remião, Mariana Härter Lucas, Caroline Gomes Domingues, William Borges Basso, Andrea Cristina Jornada, Denise Soledade Deschamps, João Carlos Beck, Ruy Carlos Ruver Pohlmann, Adriana Raffin Bordignon, Vilceu Seixas, Fabiana Kömmling Campos, Vinicius Farias Guterres, Silvia Stanisçuaski Collares, Tiago Effects of Two Types of Melatonin-Loaded Nanocapsules with Distinct Supramolecular Structures: Polymeric (NC) and Lipid-Core Nanocapsules (LNC) on Bovine Embryo Culture Model |
title | Effects of Two Types of Melatonin-Loaded Nanocapsules with Distinct Supramolecular Structures: Polymeric (NC) and Lipid-Core Nanocapsules (LNC) on Bovine Embryo Culture Model |
title_full | Effects of Two Types of Melatonin-Loaded Nanocapsules with Distinct Supramolecular Structures: Polymeric (NC) and Lipid-Core Nanocapsules (LNC) on Bovine Embryo Culture Model |
title_fullStr | Effects of Two Types of Melatonin-Loaded Nanocapsules with Distinct Supramolecular Structures: Polymeric (NC) and Lipid-Core Nanocapsules (LNC) on Bovine Embryo Culture Model |
title_full_unstemmed | Effects of Two Types of Melatonin-Loaded Nanocapsules with Distinct Supramolecular Structures: Polymeric (NC) and Lipid-Core Nanocapsules (LNC) on Bovine Embryo Culture Model |
title_short | Effects of Two Types of Melatonin-Loaded Nanocapsules with Distinct Supramolecular Structures: Polymeric (NC) and Lipid-Core Nanocapsules (LNC) on Bovine Embryo Culture Model |
title_sort | effects of two types of melatonin-loaded nanocapsules with distinct supramolecular structures: polymeric (nc) and lipid-core nanocapsules (lnc) on bovine embryo culture model |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4910990/ https://www.ncbi.nlm.nih.gov/pubmed/27310006 http://dx.doi.org/10.1371/journal.pone.0157561 |
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