Ameliorative role of diallyl disulfide against glycerol-induced nephrotoxicity in rats

Introduction: This study investigated the role of diallyl disulfide (DADS) against glycerol-induced nephrotoxicity in rats. Moreover, the role of peroxisome proliferator activated receptor-γ (PPAR-γ) in DADS-mediated renoprotection has been explored. Materials and Methods: Male Wistar albino rats we...

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Main Authors: Ashwani Kumar Sharma, Anmoldeep Kaur, Japneet Kaur, Gurpreet Kaur, Apporva Chawla, Mannan Khanna, Harmanpreet Kaur, Harnoor Kaur, Tajpreet Kaur, Amrit Pal Singh
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2021-01-01
Series:Journal of Pharmacy and Bioallied Sciences
Subjects:
Online Access:http://www.jpbsonline.org/article.asp?issn=0975-7406;year=2021;volume=13;issue=1;spage=129;epage=135;aulast=Sharma
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spelling doaj-bf7060cefcff4df58e27a874a6e90cc12021-03-31T07:28:31ZengWolters Kluwer Medknow PublicationsJournal of Pharmacy and Bioallied Sciences0975-74062021-01-0113112913510.4103/jpbs.JPBS_177_20Ameliorative role of diallyl disulfide against glycerol-induced nephrotoxicity in ratsAshwani Kumar SharmaAnmoldeep KaurJapneet KaurGurpreet KaurApporva ChawlaMannan KhannaHarmanpreet KaurHarnoor KaurTajpreet KaurAmrit Pal SinghIntroduction: This study investigated the role of diallyl disulfide (DADS) against glycerol-induced nephrotoxicity in rats. Moreover, the role of peroxisome proliferator activated receptor-γ (PPAR-γ) in DADS-mediated renoprotection has been explored. Materials and Methods: Male Wistar albino rats were challenged with glycerol (50% w/v, 8 mL/kg intramuscular) to induce nephrotoxicity. Kidney injury was quantified by measuring serum creatinine, creatinine clearance, urea, potassium, fractional excretion of sodium, and microproteinuria in rats. Renal oxidative stress was measured in terms of thiobarbituric acid reactive substances, superoxide anion generation, and reduced glutathione levels. Hematoxylin–eosin (H&E) and periodic acid Schiff staining of renal samples was done to show histological changes. Glycerol-induced muscle damage was quantified by assaying creatine kinase (CK) levels in rat serum. Results: Administration of glycerol resulted in muscle damage as reflected by significant rise in CK levels in rats. Glycerol intoxication led kidney damage was reflected by significant change in renal biochemical parameters, renal oxidative stress and histological changes in rat kidneys. Administration of DADS attenuated glycerol-induced renal damage. Notably, pretreatment with bisphenol A diglycidyl ether, a PPAR-γ antagonist, abolished DADS renoprotection in rats. Conclusion: We conclude that DADS affords protection against glycerol-induced renal damage in rats. Moreover, PPAR-γ plays a key role in DADS-mediated renoprotective effect.http://www.jpbsonline.org/article.asp?issn=0975-7406;year=2021;volume=13;issue=1;spage=129;epage=135;aulast=Sharmadiallyl disulfideglycerolkidneyppar-γrhabdomyolysis
collection DOAJ
language English
format Article
sources DOAJ
author Ashwani Kumar Sharma
Anmoldeep Kaur
Japneet Kaur
Gurpreet Kaur
Apporva Chawla
Mannan Khanna
Harmanpreet Kaur
Harnoor Kaur
Tajpreet Kaur
Amrit Pal Singh
spellingShingle Ashwani Kumar Sharma
Anmoldeep Kaur
Japneet Kaur
Gurpreet Kaur
Apporva Chawla
Mannan Khanna
Harmanpreet Kaur
Harnoor Kaur
Tajpreet Kaur
Amrit Pal Singh
Ameliorative role of diallyl disulfide against glycerol-induced nephrotoxicity in rats
Journal of Pharmacy and Bioallied Sciences
diallyl disulfide
glycerol
kidney
ppar-γ
rhabdomyolysis
author_facet Ashwani Kumar Sharma
Anmoldeep Kaur
Japneet Kaur
Gurpreet Kaur
Apporva Chawla
Mannan Khanna
Harmanpreet Kaur
Harnoor Kaur
Tajpreet Kaur
Amrit Pal Singh
author_sort Ashwani Kumar Sharma
title Ameliorative role of diallyl disulfide against glycerol-induced nephrotoxicity in rats
title_short Ameliorative role of diallyl disulfide against glycerol-induced nephrotoxicity in rats
title_full Ameliorative role of diallyl disulfide against glycerol-induced nephrotoxicity in rats
title_fullStr Ameliorative role of diallyl disulfide against glycerol-induced nephrotoxicity in rats
title_full_unstemmed Ameliorative role of diallyl disulfide against glycerol-induced nephrotoxicity in rats
title_sort ameliorative role of diallyl disulfide against glycerol-induced nephrotoxicity in rats
publisher Wolters Kluwer Medknow Publications
series Journal of Pharmacy and Bioallied Sciences
issn 0975-7406
publishDate 2021-01-01
description Introduction: This study investigated the role of diallyl disulfide (DADS) against glycerol-induced nephrotoxicity in rats. Moreover, the role of peroxisome proliferator activated receptor-γ (PPAR-γ) in DADS-mediated renoprotection has been explored. Materials and Methods: Male Wistar albino rats were challenged with glycerol (50% w/v, 8 mL/kg intramuscular) to induce nephrotoxicity. Kidney injury was quantified by measuring serum creatinine, creatinine clearance, urea, potassium, fractional excretion of sodium, and microproteinuria in rats. Renal oxidative stress was measured in terms of thiobarbituric acid reactive substances, superoxide anion generation, and reduced glutathione levels. Hematoxylin–eosin (H&E) and periodic acid Schiff staining of renal samples was done to show histological changes. Glycerol-induced muscle damage was quantified by assaying creatine kinase (CK) levels in rat serum. Results: Administration of glycerol resulted in muscle damage as reflected by significant rise in CK levels in rats. Glycerol intoxication led kidney damage was reflected by significant change in renal biochemical parameters, renal oxidative stress and histological changes in rat kidneys. Administration of DADS attenuated glycerol-induced renal damage. Notably, pretreatment with bisphenol A diglycidyl ether, a PPAR-γ antagonist, abolished DADS renoprotection in rats. Conclusion: We conclude that DADS affords protection against glycerol-induced renal damage in rats. Moreover, PPAR-γ plays a key role in DADS-mediated renoprotective effect.
topic diallyl disulfide
glycerol
kidney
ppar-γ
rhabdomyolysis
url http://www.jpbsonline.org/article.asp?issn=0975-7406;year=2021;volume=13;issue=1;spage=129;epage=135;aulast=Sharma
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