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Lithium ameliorates tubule-interstitial injury through activation of the mTORC2/protein kinase B pathway

Tubule-interstitial injury (TII) is a critical step in the progression of renal disease. It has been proposed that changes in proximal tubule (PT) albumin endocytosis plays an important role in the development of TII. Some reports have shown protective effects of lithium on kidney injury animal mode...

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Autores principales: Teixeira, Douglas E., Peruchetti, Diogo B., Silva, Leandro S., Silva-Aguiar, Rodrigo P., Oquendo, Morgana B., Silva-Filho, João Luiz, Takiya, Christina M., Leal-Cardoso, José Henrique, Pinheiro, Ana Acacia S., Caruso-Neves, Celso
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6474631/
https://www.ncbi.nlm.nih.gov/pubmed/31002704
http://dx.doi.org/10.1371/journal.pone.0215871
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author Teixeira, Douglas E.
Peruchetti, Diogo B.
Silva, Leandro S.
Silva-Aguiar, Rodrigo P.
Oquendo, Morgana B.
Silva-Filho, João Luiz
Takiya, Christina M.
Leal-Cardoso, José Henrique
Pinheiro, Ana Acacia S.
Caruso-Neves, Celso
author_facet Teixeira, Douglas E.
Peruchetti, Diogo B.
Silva, Leandro S.
Silva-Aguiar, Rodrigo P.
Oquendo, Morgana B.
Silva-Filho, João Luiz
Takiya, Christina M.
Leal-Cardoso, José Henrique
Pinheiro, Ana Acacia S.
Caruso-Neves, Celso
author_sort Teixeira, Douglas E.
collection PubMed
description Tubule-interstitial injury (TII) is a critical step in the progression of renal disease. It has been proposed that changes in proximal tubule (PT) albumin endocytosis plays an important role in the development of TII. Some reports have shown protective effects of lithium on kidney injury animal models that was correlated to proteinuria. We tested the hypothesis that lithium treatment ameliorates the development of TII due to changes in albumin endocytosis. Two experimental models were used: (1) TII induced by albumin overload in an animal model; (2) LLC-PK1 cells, a PT cell line. Lithium treatment ameliorates TII induced by albumin overload measured by (1) proteinuria; (2) collagen deposition; (3) area of tubule-interstitial space, and (4) macrophage infiltration. Lithium treatment increased mTORC2 activity leading to the phosphorylation of protein kinase B (PKB) at Ser473 and its activation. This mechanism enhanced albumin endocytosis in PT cells, which decreased the proteinuria observed in TII induced by albumin overload. This effect did not involve changes in the expression of megalin, a PT albumin receptor. In addition, activation of this pathway decreased apoptosis in LLC-PK1 cells, a PT cell line, induced by higher albumin concentration, similar to that found in pathophysiologic conditions. Our results indicate that the protective role of lithium treatment on TII induced by albumin overload involves an increase in PT albumin endocytosis due to activation of the mTORC2/PKB pathway. These results open new possibilities in understanding the effects of lithium on the progression of renal disease.
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spelling pubmed-64746312019-05-03 Lithium ameliorates tubule-interstitial injury through activation of the mTORC2/protein kinase B pathway Teixeira, Douglas E. Peruchetti, Diogo B. Silva, Leandro S. Silva-Aguiar, Rodrigo P. Oquendo, Morgana B. Silva-Filho, João Luiz Takiya, Christina M. Leal-Cardoso, José Henrique Pinheiro, Ana Acacia S. Caruso-Neves, Celso PLoS One Research Article Tubule-interstitial injury (TII) is a critical step in the progression of renal disease. It has been proposed that changes in proximal tubule (PT) albumin endocytosis plays an important role in the development of TII. Some reports have shown protective effects of lithium on kidney injury animal models that was correlated to proteinuria. We tested the hypothesis that lithium treatment ameliorates the development of TII due to changes in albumin endocytosis. Two experimental models were used: (1) TII induced by albumin overload in an animal model; (2) LLC-PK1 cells, a PT cell line. Lithium treatment ameliorates TII induced by albumin overload measured by (1) proteinuria; (2) collagen deposition; (3) area of tubule-interstitial space, and (4) macrophage infiltration. Lithium treatment increased mTORC2 activity leading to the phosphorylation of protein kinase B (PKB) at Ser473 and its activation. This mechanism enhanced albumin endocytosis in PT cells, which decreased the proteinuria observed in TII induced by albumin overload. This effect did not involve changes in the expression of megalin, a PT albumin receptor. In addition, activation of this pathway decreased apoptosis in LLC-PK1 cells, a PT cell line, induced by higher albumin concentration, similar to that found in pathophysiologic conditions. Our results indicate that the protective role of lithium treatment on TII induced by albumin overload involves an increase in PT albumin endocytosis due to activation of the mTORC2/PKB pathway. These results open new possibilities in understanding the effects of lithium on the progression of renal disease. Public Library of Science 2019-04-19 /pmc/articles/PMC6474631/ /pubmed/31002704 http://dx.doi.org/10.1371/journal.pone.0215871 Text en © 2019 Teixeira 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
Teixeira, Douglas E.
Peruchetti, Diogo B.
Silva, Leandro S.
Silva-Aguiar, Rodrigo P.
Oquendo, Morgana B.
Silva-Filho, João Luiz
Takiya, Christina M.
Leal-Cardoso, José Henrique
Pinheiro, Ana Acacia S.
Caruso-Neves, Celso
Lithium ameliorates tubule-interstitial injury through activation of the mTORC2/protein kinase B pathway
title Lithium ameliorates tubule-interstitial injury through activation of the mTORC2/protein kinase B pathway
title_full Lithium ameliorates tubule-interstitial injury through activation of the mTORC2/protein kinase B pathway
title_fullStr Lithium ameliorates tubule-interstitial injury through activation of the mTORC2/protein kinase B pathway
title_full_unstemmed Lithium ameliorates tubule-interstitial injury through activation of the mTORC2/protein kinase B pathway
title_short Lithium ameliorates tubule-interstitial injury through activation of the mTORC2/protein kinase B pathway
title_sort lithium ameliorates tubule-interstitial injury through activation of the mtorc2/protein kinase b pathway
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6474631/
https://www.ncbi.nlm.nih.gov/pubmed/31002704
http://dx.doi.org/10.1371/journal.pone.0215871
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