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Renal Glomerular Mitochondria Function in Salt-Sensitive Hypertension

Salt-sensitive (SS) hypertension is accompanied with an early onset of proteinuria, which results from the loss of glomerular podocytes. Here, we hypothesized that glomerular damage in the SS hypertension occurs in part due to mitochondria dysfunction, and we used a unique model of freshly isolated...

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Autores principales: Domondon, Mark, Polina, Iuliia, Nikiforova, Anna B., Sultanova, Regina F., Kruger, Claudia, Vasileva, Valeriia Y., Fomin, Mikhail V., Beeson, Gyda C., Nieminen, Anna-Liisa, Smythe, Nancy, Maldonado, Eduardo N., Stadler, Krisztian, Ilatovskaya, Daria V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7010849/
https://www.ncbi.nlm.nih.gov/pubmed/32116733
http://dx.doi.org/10.3389/fphys.2019.01588
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author Domondon, Mark
Polina, Iuliia
Nikiforova, Anna B.
Sultanova, Regina F.
Kruger, Claudia
Vasileva, Valeriia Y.
Fomin, Mikhail V.
Beeson, Gyda C.
Nieminen, Anna-Liisa
Smythe, Nancy
Maldonado, Eduardo N.
Stadler, Krisztian
Ilatovskaya, Daria V.
author_facet Domondon, Mark
Polina, Iuliia
Nikiforova, Anna B.
Sultanova, Regina F.
Kruger, Claudia
Vasileva, Valeriia Y.
Fomin, Mikhail V.
Beeson, Gyda C.
Nieminen, Anna-Liisa
Smythe, Nancy
Maldonado, Eduardo N.
Stadler, Krisztian
Ilatovskaya, Daria V.
author_sort Domondon, Mark
collection PubMed
description Salt-sensitive (SS) hypertension is accompanied with an early onset of proteinuria, which results from the loss of glomerular podocytes. Here, we hypothesized that glomerular damage in the SS hypertension occurs in part due to mitochondria dysfunction, and we used a unique model of freshly isolated glomeruli to test this hypothesis. In order to mimic SS hypertension, we used Dahl SS rats, an established animal model. Animals were fed a 0.4% NaCl (normal salt, NS) diet or challenged with a high salt (HS) 4% NaCl diet for 21 days to induce an increase in blood pressure (BP). Similar to previous studies, we found that HS diet caused renal hypertrophy, increased BP, glomerulosclerosis, and renal lesions such as fibrosis and protein casts. We did not observe changes in mitochondrial biogenesis in the renal cortex or isolated glomeruli fractions. However, Seahorse assay performed on freshly isolated glomeruli revealed that basal mitochondrial respiration, maximal respiration, and spare respiratory capacity were lower in the HS compared to the NS group. Using confocal imaging and staining for mitochondrial H(2)O(2) using mitoPY1, we detected an intensified response to an acute H(2)O(2) application in the podocytes of the glomeruli isolated from the HS diet fed group. TEM analysis showed that glomerular mitochondria from the HS diet fed group have structural abnormalities (swelling, enlargement, less defined cristae). Therefore, we report that glomerular mitochondria in SS hypertension are functionally and structurally defective, and this impairment could eventually lead to loss of podocytes and proteinuria. Thus, the glomerular–mitochondria axis can be targeted in novel treatment strategies for hypertensive glomerulosclerosis.
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spelling pubmed-70108492020-02-28 Renal Glomerular Mitochondria Function in Salt-Sensitive Hypertension Domondon, Mark Polina, Iuliia Nikiforova, Anna B. Sultanova, Regina F. Kruger, Claudia Vasileva, Valeriia Y. Fomin, Mikhail V. Beeson, Gyda C. Nieminen, Anna-Liisa Smythe, Nancy Maldonado, Eduardo N. Stadler, Krisztian Ilatovskaya, Daria V. Front Physiol Physiology Salt-sensitive (SS) hypertension is accompanied with an early onset of proteinuria, which results from the loss of glomerular podocytes. Here, we hypothesized that glomerular damage in the SS hypertension occurs in part due to mitochondria dysfunction, and we used a unique model of freshly isolated glomeruli to test this hypothesis. In order to mimic SS hypertension, we used Dahl SS rats, an established animal model. Animals were fed a 0.4% NaCl (normal salt, NS) diet or challenged with a high salt (HS) 4% NaCl diet for 21 days to induce an increase in blood pressure (BP). Similar to previous studies, we found that HS diet caused renal hypertrophy, increased BP, glomerulosclerosis, and renal lesions such as fibrosis and protein casts. We did not observe changes in mitochondrial biogenesis in the renal cortex or isolated glomeruli fractions. However, Seahorse assay performed on freshly isolated glomeruli revealed that basal mitochondrial respiration, maximal respiration, and spare respiratory capacity were lower in the HS compared to the NS group. Using confocal imaging and staining for mitochondrial H(2)O(2) using mitoPY1, we detected an intensified response to an acute H(2)O(2) application in the podocytes of the glomeruli isolated from the HS diet fed group. TEM analysis showed that glomerular mitochondria from the HS diet fed group have structural abnormalities (swelling, enlargement, less defined cristae). Therefore, we report that glomerular mitochondria in SS hypertension are functionally and structurally defective, and this impairment could eventually lead to loss of podocytes and proteinuria. Thus, the glomerular–mitochondria axis can be targeted in novel treatment strategies for hypertensive glomerulosclerosis. Frontiers Media S.A. 2020-02-04 /pmc/articles/PMC7010849/ /pubmed/32116733 http://dx.doi.org/10.3389/fphys.2019.01588 Text en Copyright © 2020 Domondon, Polina, Nikiforova, Sultanova, Kruger, Vasileva, Fomin, Beeson, Nieminen, Smythe, Maldonado, Stadler and Ilatovskaya. http://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 Physiology
Domondon, Mark
Polina, Iuliia
Nikiforova, Anna B.
Sultanova, Regina F.
Kruger, Claudia
Vasileva, Valeriia Y.
Fomin, Mikhail V.
Beeson, Gyda C.
Nieminen, Anna-Liisa
Smythe, Nancy
Maldonado, Eduardo N.
Stadler, Krisztian
Ilatovskaya, Daria V.
Renal Glomerular Mitochondria Function in Salt-Sensitive Hypertension
title Renal Glomerular Mitochondria Function in Salt-Sensitive Hypertension
title_full Renal Glomerular Mitochondria Function in Salt-Sensitive Hypertension
title_fullStr Renal Glomerular Mitochondria Function in Salt-Sensitive Hypertension
title_full_unstemmed Renal Glomerular Mitochondria Function in Salt-Sensitive Hypertension
title_short Renal Glomerular Mitochondria Function in Salt-Sensitive Hypertension
title_sort renal glomerular mitochondria function in salt-sensitive hypertension
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7010849/
https://www.ncbi.nlm.nih.gov/pubmed/32116733
http://dx.doi.org/10.3389/fphys.2019.01588
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