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Pretreatment with the Free Radical Scavenger Edaravone Mitigates Kidney Glycogen Depletion and Neutrophil Infiltration after Leg Ischemia in a Rat Model: A Pilot Study

Objective: We have previously shown that pretreatment with the free radical scavenger edaravone (Radicut(®), Mitsubishi Tanabe Pharma Co., Japan) mitigated skeletal muscle damage due to ischemia reperfusion. In this study, we sought to validate its use in an experimental model of myonephropathic-met...

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Autores principales: Yamamura, Mitsuhiro, Miyamoto, Yuji, Mitsuno, Masataka, Tanaka, Hiroe, Ryomoto, Masaaki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Japanese College of Angiology / The Japanese Society for Vascular Surgery / Japanese Society of Phlebology 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5835430/
https://www.ncbi.nlm.nih.gov/pubmed/29515706
http://dx.doi.org/10.3400/avd.oa.17-00019
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author Yamamura, Mitsuhiro
Miyamoto, Yuji
Mitsuno, Masataka
Tanaka, Hiroe
Ryomoto, Masaaki
author_facet Yamamura, Mitsuhiro
Miyamoto, Yuji
Mitsuno, Masataka
Tanaka, Hiroe
Ryomoto, Masaaki
author_sort Yamamura, Mitsuhiro
collection PubMed
description Objective: We have previously shown that pretreatment with the free radical scavenger edaravone (Radicut(®), Mitsubishi Tanabe Pharma Co., Japan) mitigated skeletal muscle damage due to ischemia reperfusion. In this study, we sought to validate its use in an experimental model of myonephropathic-metabolic syndrome (MNMS). Methods: Either edaravone (3.0 mg/kg; edaravone group; n=4) or saline (saline group; n=6) was intraperitoneally injected into male Lewis rats (508±31 g). Normal kidneys were harvested as control (n=3). MNMS was induced by bilaterally clamping the common femoral arteries for 5 h and declamping 5 h later. Kidney damage was evaluated by quantifying Periodic Acid Schiff (PAS)-positive area (glycogen storage) and esterase-positive cells (neutrophil infiltration). Results: The PAS-positive area in the saline group was significantly lower than that in the normal group (36.9±2.6 vs. 66.9±1.2%, P<0.01); the PAS-positive area in the edaravone group remained comparable to that in the normal group (52.9±0.9%, P<0.01). Esterase-positive cells in the saline group were significantly higher than in normal kidneys (62.4±5.6 vs. 17.5±2.4 cells/mm(2), P<0.01), while they were significantly reduced in the edaravone group (32.8±5.7 cells/mm(2), P<0.01). Conclusion: Edaravone pretreatment mitigates MNMS-induced kidney damage by reducing both glycogen depletion and neutrophil infiltration.
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spelling pubmed-58354302018-03-07 Pretreatment with the Free Radical Scavenger Edaravone Mitigates Kidney Glycogen Depletion and Neutrophil Infiltration after Leg Ischemia in a Rat Model: A Pilot Study Yamamura, Mitsuhiro Miyamoto, Yuji Mitsuno, Masataka Tanaka, Hiroe Ryomoto, Masaaki Ann Vasc Dis Original Article Objective: We have previously shown that pretreatment with the free radical scavenger edaravone (Radicut(®), Mitsubishi Tanabe Pharma Co., Japan) mitigated skeletal muscle damage due to ischemia reperfusion. In this study, we sought to validate its use in an experimental model of myonephropathic-metabolic syndrome (MNMS). Methods: Either edaravone (3.0 mg/kg; edaravone group; n=4) or saline (saline group; n=6) was intraperitoneally injected into male Lewis rats (508±31 g). Normal kidneys were harvested as control (n=3). MNMS was induced by bilaterally clamping the common femoral arteries for 5 h and declamping 5 h later. Kidney damage was evaluated by quantifying Periodic Acid Schiff (PAS)-positive area (glycogen storage) and esterase-positive cells (neutrophil infiltration). Results: The PAS-positive area in the saline group was significantly lower than that in the normal group (36.9±2.6 vs. 66.9±1.2%, P<0.01); the PAS-positive area in the edaravone group remained comparable to that in the normal group (52.9±0.9%, P<0.01). Esterase-positive cells in the saline group were significantly higher than in normal kidneys (62.4±5.6 vs. 17.5±2.4 cells/mm(2), P<0.01), while they were significantly reduced in the edaravone group (32.8±5.7 cells/mm(2), P<0.01). Conclusion: Edaravone pretreatment mitigates MNMS-induced kidney damage by reducing both glycogen depletion and neutrophil infiltration. Japanese College of Angiology / The Japanese Society for Vascular Surgery / Japanese Society of Phlebology 2017-12-25 /pmc/articles/PMC5835430/ /pubmed/29515706 http://dx.doi.org/10.3400/avd.oa.17-00019 Text en Copyright © 2017 Annals of Vascular Diseases http://creativecommons.org/licenses/by-nc-sa/4.0/ This article is distributed under the terms of the Creative Commons Attribution License, which permits use, distribution, and reproduction in any medium, provided the credit of the original work, a link to the license, and indication of any change are properly given, and the original work is not used for commercial purposes. Remixed or transformed contributions must be distributed under the same license as the original.
spellingShingle Original Article
Yamamura, Mitsuhiro
Miyamoto, Yuji
Mitsuno, Masataka
Tanaka, Hiroe
Ryomoto, Masaaki
Pretreatment with the Free Radical Scavenger Edaravone Mitigates Kidney Glycogen Depletion and Neutrophil Infiltration after Leg Ischemia in a Rat Model: A Pilot Study
title Pretreatment with the Free Radical Scavenger Edaravone Mitigates Kidney Glycogen Depletion and Neutrophil Infiltration after Leg Ischemia in a Rat Model: A Pilot Study
title_full Pretreatment with the Free Radical Scavenger Edaravone Mitigates Kidney Glycogen Depletion and Neutrophil Infiltration after Leg Ischemia in a Rat Model: A Pilot Study
title_fullStr Pretreatment with the Free Radical Scavenger Edaravone Mitigates Kidney Glycogen Depletion and Neutrophil Infiltration after Leg Ischemia in a Rat Model: A Pilot Study
title_full_unstemmed Pretreatment with the Free Radical Scavenger Edaravone Mitigates Kidney Glycogen Depletion and Neutrophil Infiltration after Leg Ischemia in a Rat Model: A Pilot Study
title_short Pretreatment with the Free Radical Scavenger Edaravone Mitigates Kidney Glycogen Depletion and Neutrophil Infiltration after Leg Ischemia in a Rat Model: A Pilot Study
title_sort pretreatment with the free radical scavenger edaravone mitigates kidney glycogen depletion and neutrophil infiltration after leg ischemia in a rat model: a pilot study
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5835430/
https://www.ncbi.nlm.nih.gov/pubmed/29515706
http://dx.doi.org/10.3400/avd.oa.17-00019
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