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Enhanced Autophagic Flux, Suppressed Apoptosis and Reduced Macrophage Infiltration by Dasatinib in Kidneys of Obese Mice

Obesity causes renal changes (ORC), characterized by defective renal autophagy, lipogenesis, enhanced macrophage infiltration and apoptosis. We hypothesize that Dasatinib, a tyrosine kinase inhibitor, may ameliorate changes associated with obesity. We the mice with either Obesogenic diet (OD) or a s...

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Autores principales: Elsayed, Hassan Reda Hassan, El-Gamal, Randa, Rabei, Mohammed R., Elhadidy, Mona G., Hamed, Shereen, Othman, Basma H., Elshaer, Mohamed Mahmoud Abdelraheem, Sedky, Mostafa Khaled, Hassan, Ahmed Tarek Abd Elbaset, El-Nablaway, Mohammad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8869974/
https://www.ncbi.nlm.nih.gov/pubmed/35203394
http://dx.doi.org/10.3390/cells11040746
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author Elsayed, Hassan Reda Hassan
El-Gamal, Randa
Rabei, Mohammed R.
Elhadidy, Mona G.
Hamed, Shereen
Othman, Basma H.
Elshaer, Mohamed Mahmoud Abdelraheem
Sedky, Mostafa Khaled
Hassan, Ahmed Tarek Abd Elbaset
El-Nablaway, Mohammad
author_facet Elsayed, Hassan Reda Hassan
El-Gamal, Randa
Rabei, Mohammed R.
Elhadidy, Mona G.
Hamed, Shereen
Othman, Basma H.
Elshaer, Mohamed Mahmoud Abdelraheem
Sedky, Mostafa Khaled
Hassan, Ahmed Tarek Abd Elbaset
El-Nablaway, Mohammad
author_sort Elsayed, Hassan Reda Hassan
collection PubMed
description Obesity causes renal changes (ORC), characterized by defective renal autophagy, lipogenesis, enhanced macrophage infiltration and apoptosis. We hypothesize that Dasatinib, a tyrosine kinase inhibitor, may ameliorate changes associated with obesity. We the mice with either Obesogenic diet (OD) or a standard basal diet. After 12 weeks, the mice received either vehicle or Dasatinib 4 mg/kg/d for an additional four weeks. We examined serum creatinine, urea, lipid profile and renal cortical mRNA expression for lipogenesis marker SREBP1, inflammatory macrophage marker iNOS and fibrosis markers; TGFβ and PDGFA genes; immunohistochemical (IHC) staining for CD68; inflammatory macrophage marker and ASMA; fibrosis marker, LC3 and SQSTM1/P62; autophagy markers and western blotting (WB) for caspase-3; and, as an apoptosis marker, LC3II/I and SQSTM1/P62 in addition to staining for H&E, PAS, Sirius red and histopathological scoring. Dasatinib attenuated renal cortical mRNA expression for SREBP1, iNOS, PDGFA and TGFβ and IHC staining for CD68, ASMA and SQSTM1/P62 and WB for caspase-3 and SQSTM1/P62, while elevating LC3 expression. Moreover, Dasatinib ameliorated ORC; glomerulosclerosis, glomerular expansion, tubular dilatation, vacuolation and casts; inflammatory cellular infiltration; and fibrosis. Dasatinib is a promising therapy for ORC by correcting autophagy impairment, attenuating lipogenesis, apoptosis and macrophage infiltration by inducing antifibrotic activity.
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spelling pubmed-88699742022-02-25 Enhanced Autophagic Flux, Suppressed Apoptosis and Reduced Macrophage Infiltration by Dasatinib in Kidneys of Obese Mice Elsayed, Hassan Reda Hassan El-Gamal, Randa Rabei, Mohammed R. Elhadidy, Mona G. Hamed, Shereen Othman, Basma H. Elshaer, Mohamed Mahmoud Abdelraheem Sedky, Mostafa Khaled Hassan, Ahmed Tarek Abd Elbaset El-Nablaway, Mohammad Cells Article Obesity causes renal changes (ORC), characterized by defective renal autophagy, lipogenesis, enhanced macrophage infiltration and apoptosis. We hypothesize that Dasatinib, a tyrosine kinase inhibitor, may ameliorate changes associated with obesity. We the mice with either Obesogenic diet (OD) or a standard basal diet. After 12 weeks, the mice received either vehicle or Dasatinib 4 mg/kg/d for an additional four weeks. We examined serum creatinine, urea, lipid profile and renal cortical mRNA expression for lipogenesis marker SREBP1, inflammatory macrophage marker iNOS and fibrosis markers; TGFβ and PDGFA genes; immunohistochemical (IHC) staining for CD68; inflammatory macrophage marker and ASMA; fibrosis marker, LC3 and SQSTM1/P62; autophagy markers and western blotting (WB) for caspase-3; and, as an apoptosis marker, LC3II/I and SQSTM1/P62 in addition to staining for H&E, PAS, Sirius red and histopathological scoring. Dasatinib attenuated renal cortical mRNA expression for SREBP1, iNOS, PDGFA and TGFβ and IHC staining for CD68, ASMA and SQSTM1/P62 and WB for caspase-3 and SQSTM1/P62, while elevating LC3 expression. Moreover, Dasatinib ameliorated ORC; glomerulosclerosis, glomerular expansion, tubular dilatation, vacuolation and casts; inflammatory cellular infiltration; and fibrosis. Dasatinib is a promising therapy for ORC by correcting autophagy impairment, attenuating lipogenesis, apoptosis and macrophage infiltration by inducing antifibrotic activity. MDPI 2022-02-21 /pmc/articles/PMC8869974/ /pubmed/35203394 http://dx.doi.org/10.3390/cells11040746 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Elsayed, Hassan Reda Hassan
El-Gamal, Randa
Rabei, Mohammed R.
Elhadidy, Mona G.
Hamed, Shereen
Othman, Basma H.
Elshaer, Mohamed Mahmoud Abdelraheem
Sedky, Mostafa Khaled
Hassan, Ahmed Tarek Abd Elbaset
El-Nablaway, Mohammad
Enhanced Autophagic Flux, Suppressed Apoptosis and Reduced Macrophage Infiltration by Dasatinib in Kidneys of Obese Mice
title Enhanced Autophagic Flux, Suppressed Apoptosis and Reduced Macrophage Infiltration by Dasatinib in Kidneys of Obese Mice
title_full Enhanced Autophagic Flux, Suppressed Apoptosis and Reduced Macrophage Infiltration by Dasatinib in Kidneys of Obese Mice
title_fullStr Enhanced Autophagic Flux, Suppressed Apoptosis and Reduced Macrophage Infiltration by Dasatinib in Kidneys of Obese Mice
title_full_unstemmed Enhanced Autophagic Flux, Suppressed Apoptosis and Reduced Macrophage Infiltration by Dasatinib in Kidneys of Obese Mice
title_short Enhanced Autophagic Flux, Suppressed Apoptosis and Reduced Macrophage Infiltration by Dasatinib in Kidneys of Obese Mice
title_sort enhanced autophagic flux, suppressed apoptosis and reduced macrophage infiltration by dasatinib in kidneys of obese mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8869974/
https://www.ncbi.nlm.nih.gov/pubmed/35203394
http://dx.doi.org/10.3390/cells11040746
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