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Parthenogenetic bovine embryos secrete type I interferon capable of stimulating ISG15 in luteal cell culture

Interferon tau (IFNT) is the pregnancy recognition signal in ruminants and is secreted by trophoblast cells. Paracrine action in the endometrium is well established by inhibiting luteolytic pulses of prostaglandin F2 alpha. Recently, endocrine action was documented in the corpus luteum, blood cell a...

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Autores principales: Bridi, Alessandra, Bertolin, Kalyne, Rissi, Vitor B., Mujica, Lady K.S., Glanzner, Werner G., de Macedo, Mariana P., Comim, Fabio V., Gonçalves, Paulo B.D., Antoniazzi, Alfredo Q.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Colégio Brasileiro de Reprodução Animal 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8203113/
https://www.ncbi.nlm.nih.gov/pubmed/34221141
http://dx.doi.org/10.21451/1984-3143-AR2018-0095
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author Bridi, Alessandra
Bertolin, Kalyne
Rissi, Vitor B.
Mujica, Lady K.S.
Glanzner, Werner G.
de Macedo, Mariana P.
Comim, Fabio V.
Gonçalves, Paulo B.D.
Antoniazzi, Alfredo Q.
author_facet Bridi, Alessandra
Bertolin, Kalyne
Rissi, Vitor B.
Mujica, Lady K.S.
Glanzner, Werner G.
de Macedo, Mariana P.
Comim, Fabio V.
Gonçalves, Paulo B.D.
Antoniazzi, Alfredo Q.
author_sort Bridi, Alessandra
collection PubMed
description Interferon tau (IFNT) is the pregnancy recognition signal in ruminants and is secreted by trophoblast cells. Paracrine action in the endometrium is well established by inhibiting luteolytic pulses of prostaglandin F2 alpha. Recently, endocrine action was documented in the corpus luteum, blood cell and liver. It was hypothesized that conditioned medium (CM) obtained from days 7, 9 and 12 parthenogenetic embryos alters luteal cell gene expression. The aim was to establish a bovine mixed luteal cell culture to evaluate cellular response associated to interferon stimulated genes, steroidogenesis and apoptosis. Conditioned medium was obtained from Days 7, 9 and 12 parthenogenetic (PA) embryos culture. Moreover, antiviral assay was performed on CM from Days 7, 9 and 12 to verify Type I interferon activity. Luteal cell culture was validated by steroidogenic and apoptotic genes (CYP11A1 , HSD3B1, BAX, BCL2, AKT and XIAP mRNA expression), and concentration of progesterone as endpoint. Luteal cell culture was treated with interferon alpha (IFNA) and CM from parthenogenetic embryos. Antiviral assay revealed Type I interferon activity on CM from embryos increasing on Days 9 and 12. ISG15 mRNA was greater in the mixed luteal cells culture treated with 1, 10 and 100ng/ml of interferon alpha (IFNA) and also on Days 7, 9 and 12 CM treatments. Concentration of progesterone was not altered in luteal cell culture regardless of treatments. Steroidogenic and apoptotic genes were similar among groups in luteal cell culture treated with different doses of IFNA or CM from PA embryos. In conclusion, parthenogenetic embryo-derived CM has antiviral activity, luteal cell culture respond to Type I interferon by expressing IGS15. These data indicate this model can be used for IFNT endocrine signaling studies.
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spelling pubmed-82031132021-07-02 Parthenogenetic bovine embryos secrete type I interferon capable of stimulating ISG15 in luteal cell culture Bridi, Alessandra Bertolin, Kalyne Rissi, Vitor B. Mujica, Lady K.S. Glanzner, Werner G. de Macedo, Mariana P. Comim, Fabio V. Gonçalves, Paulo B.D. Antoniazzi, Alfredo Q. Anim Reprod Original Articles Interferon tau (IFNT) is the pregnancy recognition signal in ruminants and is secreted by trophoblast cells. Paracrine action in the endometrium is well established by inhibiting luteolytic pulses of prostaglandin F2 alpha. Recently, endocrine action was documented in the corpus luteum, blood cell and liver. It was hypothesized that conditioned medium (CM) obtained from days 7, 9 and 12 parthenogenetic embryos alters luteal cell gene expression. The aim was to establish a bovine mixed luteal cell culture to evaluate cellular response associated to interferon stimulated genes, steroidogenesis and apoptosis. Conditioned medium was obtained from Days 7, 9 and 12 parthenogenetic (PA) embryos culture. Moreover, antiviral assay was performed on CM from Days 7, 9 and 12 to verify Type I interferon activity. Luteal cell culture was validated by steroidogenic and apoptotic genes (CYP11A1 , HSD3B1, BAX, BCL2, AKT and XIAP mRNA expression), and concentration of progesterone as endpoint. Luteal cell culture was treated with interferon alpha (IFNA) and CM from parthenogenetic embryos. Antiviral assay revealed Type I interferon activity on CM from embryos increasing on Days 9 and 12. ISG15 mRNA was greater in the mixed luteal cells culture treated with 1, 10 and 100ng/ml of interferon alpha (IFNA) and also on Days 7, 9 and 12 CM treatments. Concentration of progesterone was not altered in luteal cell culture regardless of treatments. Steroidogenic and apoptotic genes were similar among groups in luteal cell culture treated with different doses of IFNA or CM from PA embryos. In conclusion, parthenogenetic embryo-derived CM has antiviral activity, luteal cell culture respond to Type I interferon by expressing IGS15. These data indicate this model can be used for IFNT endocrine signaling studies. Colégio Brasileiro de Reprodução Animal 2018-12-05 /pmc/articles/PMC8203113/ /pubmed/34221141 http://dx.doi.org/10.21451/1984-3143-AR2018-0095 Text en Copyright © The Author(s). Published by CBRA. https://creativecommons.org/licenses/by/4.0/ This is an Open Access article under the Creative Commons Attribution License (CC BY 4.0 license)
spellingShingle Original Articles
Bridi, Alessandra
Bertolin, Kalyne
Rissi, Vitor B.
Mujica, Lady K.S.
Glanzner, Werner G.
de Macedo, Mariana P.
Comim, Fabio V.
Gonçalves, Paulo B.D.
Antoniazzi, Alfredo Q.
Parthenogenetic bovine embryos secrete type I interferon capable of stimulating ISG15 in luteal cell culture
title Parthenogenetic bovine embryos secrete type I interferon capable of stimulating ISG15 in luteal cell culture
title_full Parthenogenetic bovine embryos secrete type I interferon capable of stimulating ISG15 in luteal cell culture
title_fullStr Parthenogenetic bovine embryos secrete type I interferon capable of stimulating ISG15 in luteal cell culture
title_full_unstemmed Parthenogenetic bovine embryos secrete type I interferon capable of stimulating ISG15 in luteal cell culture
title_short Parthenogenetic bovine embryos secrete type I interferon capable of stimulating ISG15 in luteal cell culture
title_sort parthenogenetic bovine embryos secrete type i interferon capable of stimulating isg15 in luteal cell culture
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8203113/
https://www.ncbi.nlm.nih.gov/pubmed/34221141
http://dx.doi.org/10.21451/1984-3143-AR2018-0095
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