Effectiveness of N-Acetylcysteine in the Treatment of Renal Deterioration Caused by Long-Term Exposure to Bisphenol A

Human health hazards caused by bisphenol A (BPA), a precursor for epoxy resins and polycarbonate-based plastics, are well documented and are closely associated with mitochondrial impairment and oxidative imbalance. This study aimed to assess the therapeutic efficacy of N-acetylcysteine (NAC) on rena...

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Main Authors: Anongporn Kobroob, Wachirasek Peerapanyasut, Sirinart Kumfu, Nipon Chattipakorn, Orawan Wongmekiat
Format: Article
Language:English
Published: MDPI AG 2021-04-01
Series:Biomolecules
Subjects:
Online Access:https://www.mdpi.com/2218-273X/11/5/655
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spelling doaj-b03753aba723465996c40633a03bc23b2021-04-29T23:04:46ZengMDPI AGBiomolecules2218-273X2021-04-011165565510.3390/biom11050655Effectiveness of N-Acetylcysteine in the Treatment of Renal Deterioration Caused by Long-Term Exposure to Bisphenol AAnongporn Kobroob0Wachirasek Peerapanyasut1Sirinart Kumfu2Nipon Chattipakorn3Orawan Wongmekiat4Division of Physiology, School of Medical Sciences, University of Phayao, Phayao 56000, ThailandRenal Physiology Unit, Department of Physiology, Faculty of Medicine, Chiang Mai University, Chiang Mai 50200, ThailandCardiac Electrophysiology Research and Training Center, Department of Physiology, Faculty of Medicine, Chiang Mai University, Chiang Mai 50200, ThailandCardiac Electrophysiology Research and Training Center, Department of Physiology, Faculty of Medicine, Chiang Mai University, Chiang Mai 50200, ThailandRenal Physiology Unit, Department of Physiology, Faculty of Medicine, Chiang Mai University, Chiang Mai 50200, ThailandHuman health hazards caused by bisphenol A (BPA), a precursor for epoxy resins and polycarbonate-based plastics, are well documented and are closely associated with mitochondrial impairment and oxidative imbalance. This study aimed to assess the therapeutic efficacy of N-acetylcysteine (NAC) on renal deterioration caused by long-term BPA exposure and examine the signaling transduction pathway involved. Male Wistar rats were given vehicle or BPA orally for 12 weeks then the BPA-treated group was subdivided to receive vehicle or NAC concurrently with BPA for a further 4 weeks, while the vehicle-treated normal control group continued to receive vehicle through to the end of experiment. Proteinuria, azotemia, glomerular filtration reduction and histopathological abnormalities caused by chronic BPA exposure were significantly reduced following NAC therapy. NAC also diminished nitric oxide and lipid peroxidation but enhanced renal glutathione levels, and counteracted BPA-induced mitochondrial swelling, increased mitochondrial reactive oxygen species production, and the loss of mitochondrial membrane potential. The benefit of NAC was related to the modulation of signaling proteins in the AMPK-SIRT3-SOD2 axis. The present study shows the potential of NAC to restore mitochondrial integrity and oxidative balance after long-term BPA exposure, and suggests that NAC therapy is an effective approach to tackle renal deterioration in this condition.https://www.mdpi.com/2218-273X/11/5/655bisphenol Akidneylong-term exposuremitochondriaN-acetylcysteineoxidative stress
collection DOAJ
language English
format Article
sources DOAJ
author Anongporn Kobroob
Wachirasek Peerapanyasut
Sirinart Kumfu
Nipon Chattipakorn
Orawan Wongmekiat
spellingShingle Anongporn Kobroob
Wachirasek Peerapanyasut
Sirinart Kumfu
Nipon Chattipakorn
Orawan Wongmekiat
Effectiveness of N-Acetylcysteine in the Treatment of Renal Deterioration Caused by Long-Term Exposure to Bisphenol A
Biomolecules
bisphenol A
kidney
long-term exposure
mitochondria
N-acetylcysteine
oxidative stress
author_facet Anongporn Kobroob
Wachirasek Peerapanyasut
Sirinart Kumfu
Nipon Chattipakorn
Orawan Wongmekiat
author_sort Anongporn Kobroob
title Effectiveness of N-Acetylcysteine in the Treatment of Renal Deterioration Caused by Long-Term Exposure to Bisphenol A
title_short Effectiveness of N-Acetylcysteine in the Treatment of Renal Deterioration Caused by Long-Term Exposure to Bisphenol A
title_full Effectiveness of N-Acetylcysteine in the Treatment of Renal Deterioration Caused by Long-Term Exposure to Bisphenol A
title_fullStr Effectiveness of N-Acetylcysteine in the Treatment of Renal Deterioration Caused by Long-Term Exposure to Bisphenol A
title_full_unstemmed Effectiveness of N-Acetylcysteine in the Treatment of Renal Deterioration Caused by Long-Term Exposure to Bisphenol A
title_sort effectiveness of n-acetylcysteine in the treatment of renal deterioration caused by long-term exposure to bisphenol a
publisher MDPI AG
series Biomolecules
issn 2218-273X
publishDate 2021-04-01
description Human health hazards caused by bisphenol A (BPA), a precursor for epoxy resins and polycarbonate-based plastics, are well documented and are closely associated with mitochondrial impairment and oxidative imbalance. This study aimed to assess the therapeutic efficacy of N-acetylcysteine (NAC) on renal deterioration caused by long-term BPA exposure and examine the signaling transduction pathway involved. Male Wistar rats were given vehicle or BPA orally for 12 weeks then the BPA-treated group was subdivided to receive vehicle or NAC concurrently with BPA for a further 4 weeks, while the vehicle-treated normal control group continued to receive vehicle through to the end of experiment. Proteinuria, azotemia, glomerular filtration reduction and histopathological abnormalities caused by chronic BPA exposure were significantly reduced following NAC therapy. NAC also diminished nitric oxide and lipid peroxidation but enhanced renal glutathione levels, and counteracted BPA-induced mitochondrial swelling, increased mitochondrial reactive oxygen species production, and the loss of mitochondrial membrane potential. The benefit of NAC was related to the modulation of signaling proteins in the AMPK-SIRT3-SOD2 axis. The present study shows the potential of NAC to restore mitochondrial integrity and oxidative balance after long-term BPA exposure, and suggests that NAC therapy is an effective approach to tackle renal deterioration in this condition.
topic bisphenol A
kidney
long-term exposure
mitochondria
N-acetylcysteine
oxidative stress
url https://www.mdpi.com/2218-273X/11/5/655
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