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Kidney microRNA Expression Pattern in Type 2 Diabetic Nephropathy in BTBR Ob/Ob Mice

Diabetic nephropathy (DN) is the main leading cause of chronic kidney disease worldwide. Although remarkable therapeutic advances have been made during the last few years, there still exists a high residual risk of disease progression to end-stage renal failure. To further understand the pathogenesi...

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Autores principales: Opazo-Ríos, Lucas, Tejera-Muñoz, Antonio, Soto Catalan, Manuel, Marchant, Vanessa, Lavoz, Carolina, Mas Fontao, Sebastián, Moreno, Juan Antonio, Fierro Fernandez, Marta, Ramos, Ricardo, Suarez-Alvarez, Beatriz, López-Larrea, Carlos, Ruiz-Ortega, Marta, Egido, Jesús, Rodrigues-Díez, Raúl R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8966705/
https://www.ncbi.nlm.nih.gov/pubmed/35370692
http://dx.doi.org/10.3389/fphar.2022.778776
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author Opazo-Ríos, Lucas
Tejera-Muñoz, Antonio
Soto Catalan, Manuel
Marchant, Vanessa
Lavoz, Carolina
Mas Fontao, Sebastián
Moreno, Juan Antonio
Fierro Fernandez, Marta
Ramos, Ricardo
Suarez-Alvarez, Beatriz
López-Larrea, Carlos
Ruiz-Ortega, Marta
Egido, Jesús
Rodrigues-Díez, Raúl R.
author_facet Opazo-Ríos, Lucas
Tejera-Muñoz, Antonio
Soto Catalan, Manuel
Marchant, Vanessa
Lavoz, Carolina
Mas Fontao, Sebastián
Moreno, Juan Antonio
Fierro Fernandez, Marta
Ramos, Ricardo
Suarez-Alvarez, Beatriz
López-Larrea, Carlos
Ruiz-Ortega, Marta
Egido, Jesús
Rodrigues-Díez, Raúl R.
author_sort Opazo-Ríos, Lucas
collection PubMed
description Diabetic nephropathy (DN) is the main leading cause of chronic kidney disease worldwide. Although remarkable therapeutic advances have been made during the last few years, there still exists a high residual risk of disease progression to end-stage renal failure. To further understand the pathogenesis of tissue injury in this disease, by means of the Next-Generation Sequencing, we have studied the microRNA (miRNA) differential expression pattern in kidneys of Black and Tan Brachyury (BTBR) ob/ob (leptin deficiency mutation) mouse. This experimental model of type 2 diabetes and obesity recapitulates the key histopathological features described in advanced human DN and therefore can provide potential useful translational information. The miRNA-seq analysis, performed in the renal cortex of 22-week-old BTBR ob/ob mice, pointed out a set of 99 miRNAs significantly increased compared to non-diabetic, non-obese control mice of the same age, whereas no miRNAs were significantly decreased. Among them, miR-802, miR-34a, miR-132, miR-101a, and mir-379 were the most upregulated ones in diabetic kidneys. The in silico prediction of potential targets for the 99 miRNAs highlighted inflammatory and immune processes, as the most relevant pathways, emphasizing the importance of inflammation in the pathogenesis of kidney damage associated to diabetes. Other identified top canonical pathways were adipogenesis (related with ectopic fatty accumulation), necroptosis (an inflammatory and regulated form of cell death), and epithelial-to-mesenchymal transition, the latter supporting the importance of tubular cell phenotype changes in the pathogenesis of DN. These findings could facilitate a better understanding of this complex disease and potentially open new avenues for the design of novel therapeutic approaches to DN.
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spelling pubmed-89667052022-03-31 Kidney microRNA Expression Pattern in Type 2 Diabetic Nephropathy in BTBR Ob/Ob Mice Opazo-Ríos, Lucas Tejera-Muñoz, Antonio Soto Catalan, Manuel Marchant, Vanessa Lavoz, Carolina Mas Fontao, Sebastián Moreno, Juan Antonio Fierro Fernandez, Marta Ramos, Ricardo Suarez-Alvarez, Beatriz López-Larrea, Carlos Ruiz-Ortega, Marta Egido, Jesús Rodrigues-Díez, Raúl R. Front Pharmacol Pharmacology Diabetic nephropathy (DN) is the main leading cause of chronic kidney disease worldwide. Although remarkable therapeutic advances have been made during the last few years, there still exists a high residual risk of disease progression to end-stage renal failure. To further understand the pathogenesis of tissue injury in this disease, by means of the Next-Generation Sequencing, we have studied the microRNA (miRNA) differential expression pattern in kidneys of Black and Tan Brachyury (BTBR) ob/ob (leptin deficiency mutation) mouse. This experimental model of type 2 diabetes and obesity recapitulates the key histopathological features described in advanced human DN and therefore can provide potential useful translational information. The miRNA-seq analysis, performed in the renal cortex of 22-week-old BTBR ob/ob mice, pointed out a set of 99 miRNAs significantly increased compared to non-diabetic, non-obese control mice of the same age, whereas no miRNAs were significantly decreased. Among them, miR-802, miR-34a, miR-132, miR-101a, and mir-379 were the most upregulated ones in diabetic kidneys. The in silico prediction of potential targets for the 99 miRNAs highlighted inflammatory and immune processes, as the most relevant pathways, emphasizing the importance of inflammation in the pathogenesis of kidney damage associated to diabetes. Other identified top canonical pathways were adipogenesis (related with ectopic fatty accumulation), necroptosis (an inflammatory and regulated form of cell death), and epithelial-to-mesenchymal transition, the latter supporting the importance of tubular cell phenotype changes in the pathogenesis of DN. These findings could facilitate a better understanding of this complex disease and potentially open new avenues for the design of novel therapeutic approaches to DN. Frontiers Media S.A. 2022-03-16 /pmc/articles/PMC8966705/ /pubmed/35370692 http://dx.doi.org/10.3389/fphar.2022.778776 Text en Copyright © 2022 Opazo-Ríos, Tejera-Muñoz, Soto Catalan, Marchant, Lavoz, Mas Fontao, Moreno, Fierro Fernandez, Ramos, Suarez-Alvarez, López-Larrea, Ruiz-Ortega, Egido and Rodrigues-Díez. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Opazo-Ríos, Lucas
Tejera-Muñoz, Antonio
Soto Catalan, Manuel
Marchant, Vanessa
Lavoz, Carolina
Mas Fontao, Sebastián
Moreno, Juan Antonio
Fierro Fernandez, Marta
Ramos, Ricardo
Suarez-Alvarez, Beatriz
López-Larrea, Carlos
Ruiz-Ortega, Marta
Egido, Jesús
Rodrigues-Díez, Raúl R.
Kidney microRNA Expression Pattern in Type 2 Diabetic Nephropathy in BTBR Ob/Ob Mice
title Kidney microRNA Expression Pattern in Type 2 Diabetic Nephropathy in BTBR Ob/Ob Mice
title_full Kidney microRNA Expression Pattern in Type 2 Diabetic Nephropathy in BTBR Ob/Ob Mice
title_fullStr Kidney microRNA Expression Pattern in Type 2 Diabetic Nephropathy in BTBR Ob/Ob Mice
title_full_unstemmed Kidney microRNA Expression Pattern in Type 2 Diabetic Nephropathy in BTBR Ob/Ob Mice
title_short Kidney microRNA Expression Pattern in Type 2 Diabetic Nephropathy in BTBR Ob/Ob Mice
title_sort kidney microrna expression pattern in type 2 diabetic nephropathy in btbr ob/ob mice
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8966705/
https://www.ncbi.nlm.nih.gov/pubmed/35370692
http://dx.doi.org/10.3389/fphar.2022.778776
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