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Dysregulation of miR-21-associated miRNA regulatory networks by chronic ethanol consumption impairs liver regeneration

Impaired liver regeneration has been considered as a hallmark of progression of alcohol-associated liver disease. Our previous studies demonstrated that in vivo inhibition of the microRNA (miRNA) miR21 can restore regenerative capacity of the liver in chronic ethanol-fed animals. The present study f...

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Autores principales: Parrish, Austin, Srivastava, Ankita, Juskeviciute, Egle, Hoek, Jan B., Vadigepalli, Rajanikanth
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Physiological Society 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8820682/
https://www.ncbi.nlm.nih.gov/pubmed/34796728
http://dx.doi.org/10.1152/physiolgenomics.00113.2021
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author Parrish, Austin
Srivastava, Ankita
Juskeviciute, Egle
Hoek, Jan B.
Vadigepalli, Rajanikanth
author_facet Parrish, Austin
Srivastava, Ankita
Juskeviciute, Egle
Hoek, Jan B.
Vadigepalli, Rajanikanth
author_sort Parrish, Austin
collection PubMed
description Impaired liver regeneration has been considered as a hallmark of progression of alcohol-associated liver disease. Our previous studies demonstrated that in vivo inhibition of the microRNA (miRNA) miR21 can restore regenerative capacity of the liver in chronic ethanol-fed animals. The present study focuses on the role of microRNA regulatory networks that are likely to mediate the miR-21 action. Rats were chronically fed an ethanol-enriched diet along with pair-fed control animals and treated with AM21 (anti-miR-21), a locked nucleic acid antisense to miR-21. Partial hepatectomy (PHx) was performed and miRNA expression profiling over the course of liver regeneration was assessed. Our results showed dynamic expression changes in several miRNAs after PHx, notably with altered miRNA expression profiles between ethanol and control groups. We found that in vivo inhibition of miR-21 led to correlated differential expression of miR-340-5p and anticorrelated expression of miR-365, let-7a, miR-1224, and miR-146a across all sample groups after PHx. Gene set enrichment analysis identified a miRNA signature significantly associated with hepatic stellate cell activation within whole liver tissue data. We hypothesized that at least part of the PHx-induced miRNA network changes responsive to miR-21 inhibition is localized to hepatic stellate cells. We validated this hypothesis using AM21 and TGF-β treatments in LX-2 human hepatic stellate cells in culture and measured expression levels of select miRNAs by quantitative RT-PCR. Based on the in vivo and in vitro results, we propose a hepatic stellate cell miRNA regulatory network as contributing to the restoration of liver regenerative capacity by miR-21 inhibition.
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spelling pubmed-88206822022-02-14 Dysregulation of miR-21-associated miRNA regulatory networks by chronic ethanol consumption impairs liver regeneration Parrish, Austin Srivastava, Ankita Juskeviciute, Egle Hoek, Jan B. Vadigepalli, Rajanikanth Physiol Genomics Research Article Impaired liver regeneration has been considered as a hallmark of progression of alcohol-associated liver disease. Our previous studies demonstrated that in vivo inhibition of the microRNA (miRNA) miR21 can restore regenerative capacity of the liver in chronic ethanol-fed animals. The present study focuses on the role of microRNA regulatory networks that are likely to mediate the miR-21 action. Rats were chronically fed an ethanol-enriched diet along with pair-fed control animals and treated with AM21 (anti-miR-21), a locked nucleic acid antisense to miR-21. Partial hepatectomy (PHx) was performed and miRNA expression profiling over the course of liver regeneration was assessed. Our results showed dynamic expression changes in several miRNAs after PHx, notably with altered miRNA expression profiles between ethanol and control groups. We found that in vivo inhibition of miR-21 led to correlated differential expression of miR-340-5p and anticorrelated expression of miR-365, let-7a, miR-1224, and miR-146a across all sample groups after PHx. Gene set enrichment analysis identified a miRNA signature significantly associated with hepatic stellate cell activation within whole liver tissue data. We hypothesized that at least part of the PHx-induced miRNA network changes responsive to miR-21 inhibition is localized to hepatic stellate cells. We validated this hypothesis using AM21 and TGF-β treatments in LX-2 human hepatic stellate cells in culture and measured expression levels of select miRNAs by quantitative RT-PCR. Based on the in vivo and in vitro results, we propose a hepatic stellate cell miRNA regulatory network as contributing to the restoration of liver regenerative capacity by miR-21 inhibition. American Physiological Society 2021-12-01 2021-11-19 /pmc/articles/PMC8820682/ /pubmed/34796728 http://dx.doi.org/10.1152/physiolgenomics.00113.2021 Text en Copyright © 2021 The Authors https://creativecommons.org/licenses/by/4.0/Licensed under Creative Commons Attribution CC-BY 4.0 (https://creativecommons.org/licenses/by/4.0/) . Published by the American Physiological Society.
spellingShingle Research Article
Parrish, Austin
Srivastava, Ankita
Juskeviciute, Egle
Hoek, Jan B.
Vadigepalli, Rajanikanth
Dysregulation of miR-21-associated miRNA regulatory networks by chronic ethanol consumption impairs liver regeneration
title Dysregulation of miR-21-associated miRNA regulatory networks by chronic ethanol consumption impairs liver regeneration
title_full Dysregulation of miR-21-associated miRNA regulatory networks by chronic ethanol consumption impairs liver regeneration
title_fullStr Dysregulation of miR-21-associated miRNA regulatory networks by chronic ethanol consumption impairs liver regeneration
title_full_unstemmed Dysregulation of miR-21-associated miRNA regulatory networks by chronic ethanol consumption impairs liver regeneration
title_short Dysregulation of miR-21-associated miRNA regulatory networks by chronic ethanol consumption impairs liver regeneration
title_sort dysregulation of mir-21-associated mirna regulatory networks by chronic ethanol consumption impairs liver regeneration
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8820682/
https://www.ncbi.nlm.nih.gov/pubmed/34796728
http://dx.doi.org/10.1152/physiolgenomics.00113.2021
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