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Preparation of Nanoemulsions of Vitamin A and C by Microfluidization: Efficacy on the Expression Pattern of Milk-Specific Proteins in MAC-T Cells

In this study, we prepared stabilized vitamin A and C nanoemulsions, and investigated their efficacy on milk-specific proteins in bovine mammary epithelial cells (MAC-T). Emulsions of vitamin A (vit-A) and C (vit-C) were prepared using Lipoid S 75 and microfluidization. The particle size and polydis...

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Autores principales: Kim, Tae-Il, Kim, Tae-Gyun, Lim, Dong-Hyun, Kim, Sang-Bum, Park, Seong-Min, Hur, Tai-Young, Ki, Kwang-Seok, Kwon, Eung-Gi, Vijayakumar, Mayakrishnan, Kim, Young-Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6680671/
https://www.ncbi.nlm.nih.gov/pubmed/31311137
http://dx.doi.org/10.3390/molecules24142566
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author Kim, Tae-Il
Kim, Tae-Gyun
Lim, Dong-Hyun
Kim, Sang-Bum
Park, Seong-Min
Hur, Tai-Young
Ki, Kwang-Seok
Kwon, Eung-Gi
Vijayakumar, Mayakrishnan
Kim, Young-Jun
author_facet Kim, Tae-Il
Kim, Tae-Gyun
Lim, Dong-Hyun
Kim, Sang-Bum
Park, Seong-Min
Hur, Tai-Young
Ki, Kwang-Seok
Kwon, Eung-Gi
Vijayakumar, Mayakrishnan
Kim, Young-Jun
author_sort Kim, Tae-Il
collection PubMed
description In this study, we prepared stabilized vitamin A and C nanoemulsions, and investigated their efficacy on milk-specific proteins in bovine mammary epithelial cells (MAC-T). Emulsions of vitamin A (vit-A) and C (vit-C) were prepared using Lipoid S 75 and microfluidization. The particle size and polydispersity index (PDI) of nanoemulsified vit-A and vit-C were studied. The cytotoxic effect of nanoemulsion-free and nanoemulsified vit-A and vit-C was determined by an MTT assay. In addition, the efficacy of nanoemulsified vit-A and vit-C on the in vitro expression pattern of milk-specific proteins in MAC-T cells was investigated by quantitative RT-PCR. The results showed that the efficacies of stabilized nanoemulsions of vit-A and vit-C were 100% and 92.7%, respectively. The particle sizes were around 475.7 and 225.4 nm, and the zeta potentials were around −33.5 and −21.3 mV, respectively. The expression changes of α(s2)-, β- and κ-casein were higher in the presence of a stabilized nanoemulsion of vit-A, compared with nanoemulsion-free vit-A. Furthermore, the expression changes of α(s2)- and β-casein were lower and that of κ-casein was higher in the presence of a stabilized nanoemulsion of vit-C, compared with nanoemulsion-free vit-C. Thus, our findings demonstrate the efficacy of nanoemulsified vit-A and vit-C in changing the expression of milk-specific proteins in MAC-T cells.
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spelling pubmed-66806712019-08-09 Preparation of Nanoemulsions of Vitamin A and C by Microfluidization: Efficacy on the Expression Pattern of Milk-Specific Proteins in MAC-T Cells Kim, Tae-Il Kim, Tae-Gyun Lim, Dong-Hyun Kim, Sang-Bum Park, Seong-Min Hur, Tai-Young Ki, Kwang-Seok Kwon, Eung-Gi Vijayakumar, Mayakrishnan Kim, Young-Jun Molecules Article In this study, we prepared stabilized vitamin A and C nanoemulsions, and investigated their efficacy on milk-specific proteins in bovine mammary epithelial cells (MAC-T). Emulsions of vitamin A (vit-A) and C (vit-C) were prepared using Lipoid S 75 and microfluidization. The particle size and polydispersity index (PDI) of nanoemulsified vit-A and vit-C were studied. The cytotoxic effect of nanoemulsion-free and nanoemulsified vit-A and vit-C was determined by an MTT assay. In addition, the efficacy of nanoemulsified vit-A and vit-C on the in vitro expression pattern of milk-specific proteins in MAC-T cells was investigated by quantitative RT-PCR. The results showed that the efficacies of stabilized nanoemulsions of vit-A and vit-C were 100% and 92.7%, respectively. The particle sizes were around 475.7 and 225.4 nm, and the zeta potentials were around −33.5 and −21.3 mV, respectively. The expression changes of α(s2)-, β- and κ-casein were higher in the presence of a stabilized nanoemulsion of vit-A, compared with nanoemulsion-free vit-A. Furthermore, the expression changes of α(s2)- and β-casein were lower and that of κ-casein was higher in the presence of a stabilized nanoemulsion of vit-C, compared with nanoemulsion-free vit-C. Thus, our findings demonstrate the efficacy of nanoemulsified vit-A and vit-C in changing the expression of milk-specific proteins in MAC-T cells. MDPI 2019-07-15 /pmc/articles/PMC6680671/ /pubmed/31311137 http://dx.doi.org/10.3390/molecules24142566 Text en © 2019 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
Kim, Tae-Il
Kim, Tae-Gyun
Lim, Dong-Hyun
Kim, Sang-Bum
Park, Seong-Min
Hur, Tai-Young
Ki, Kwang-Seok
Kwon, Eung-Gi
Vijayakumar, Mayakrishnan
Kim, Young-Jun
Preparation of Nanoemulsions of Vitamin A and C by Microfluidization: Efficacy on the Expression Pattern of Milk-Specific Proteins in MAC-T Cells
title Preparation of Nanoemulsions of Vitamin A and C by Microfluidization: Efficacy on the Expression Pattern of Milk-Specific Proteins in MAC-T Cells
title_full Preparation of Nanoemulsions of Vitamin A and C by Microfluidization: Efficacy on the Expression Pattern of Milk-Specific Proteins in MAC-T Cells
title_fullStr Preparation of Nanoemulsions of Vitamin A and C by Microfluidization: Efficacy on the Expression Pattern of Milk-Specific Proteins in MAC-T Cells
title_full_unstemmed Preparation of Nanoemulsions of Vitamin A and C by Microfluidization: Efficacy on the Expression Pattern of Milk-Specific Proteins in MAC-T Cells
title_short Preparation of Nanoemulsions of Vitamin A and C by Microfluidization: Efficacy on the Expression Pattern of Milk-Specific Proteins in MAC-T Cells
title_sort preparation of nanoemulsions of vitamin a and c by microfluidization: efficacy on the expression pattern of milk-specific proteins in mac-t cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6680671/
https://www.ncbi.nlm.nih.gov/pubmed/31311137
http://dx.doi.org/10.3390/molecules24142566
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