The mechanism of action of N-acetylcysteine (NAC): The emerging role of H2S and sulfane sulfur species

被引:275
作者
Pedre, Brandan [1 ]
Barayeu, Uladzimir [1 ,2 ]
Ezerina, Daria [1 ,2 ,3 ]
Dick, Tobias P. [1 ,2 ]
机构
[1] German Canc Res Ctr, Div Redox Regulat, DKFZ ZMBH Alliance, Neuenheimer Feld 280, D-69120 Heidelberg, Germany
[2] Heidelberg Univ, Fac Biosci, D-69120 Heidelberg, Germany
[3] Vrije Univ Brussel, VIB VUB Ctr Struct Biol, Vlaams Inst Biotechnol, Brussels Ctr Redox Biol,Struct Biol Brussels, B-1050 Brussels, Belgium
关键词
N-acetylcysteine; Cysteine; Hydrogen sulfide; Sulfane sulfur species; Persulfides; Glutathione; Disulfide reduction; Cytoprotection; Oxidative stress; ROS scavenging; Antioxidants; ACETYL-L-CYSTEINE; HYDROGEN-SULFIDE PRODUCTION; AMINO-ACID CONCENTRATION; DIETARY L-CYSTEINE; RED-BLOOD-CELLS; OXIDATIVE STRESS; 3-MERCAPTOPYRUVATE SULFURTRANSFERASE; CHEMICAL BIOLOGY; PROTEIN THIOLS; GLUTATHIONE DEPLETION;
D O I
10.1016/j.pharmthera.2021.107916
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Initially adopted as a mucolytic about 60 years ago, the cysteine prodrug N-acetylcysteine (NAC) is the standard of care to treat paracetamol intoxication, and is included on the World Health Organization's list of essential medicines. Additionally, NAC increasingly became the epitome of an "antioxidant". Arguably, it is the most widely used "antioxidant" in experimental cell and animal biology, as well as clinical studies. Most investigators use and test NAC with the idea that it prevents or attenuates oxidative stress. Conventionally, it is assumed that NAC acts as (i) a reductant of disulfide bonds, (ii) a scavenger of reactive oxygen species and/or (iii) a precursor for glutathione biosynthesis. While these mechanisms may apply under specific circumstances, they cannot be generalized to explain the effects of NAC in a majority of settings and situations. In most cases the mechanism of action has remained unclear and untested. In this review, we discuss the validity of conventional assumptions and the scope of a newly discovered mechanism of action, namely the conversion of NAC into hydrogen sulfide and sulfane sulfur species. The antioxidative and cytoprotective activities of per-and polysulfides may explain many of the effects that have previously been ascribed to NAC or NAC-derived glutathione. (c) 2021 The Author(s). Published by Elsevier Inc. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
引用
收藏
页数:22
相关论文
共 257 条
[1]   Hepatorenal protective effects of taurine and N-acetylcysteine against fipronil-induced injuries: The antioxidant status and apoptotic markers expression in rats [J].
Abdel-Daim, Mohamed M. ;
Dessouki, Amina A. ;
Abdel-Rahman, Haidy G. ;
Eltaysh, Rasha ;
Alkahtani, Saad .
SCIENCE OF THE TOTAL ENVIRONMENT, 2019, 650 :2063-2073
[2]  
Abe K, 1996, J NEUROSCI, V16, P1066
[3]   Polysulfide Na2S4 regulates the activation of PTEN/Akt/CREB signaling and cytotoxicity mediated by 1,4-naphthoquinone through formation of sulfur adducts [J].
Abiko, Yumi ;
Shinkai, Yasuhiro ;
Unoki, Takamitsu ;
Hirose, Reiko ;
Uehara, Takashi ;
Kumagai, Yoshito .
SCIENTIFIC REPORTS, 2017, 7
[4]   Cysteinyl-tRNA synthetase governs cysteine polysulfidation and mitochondrial bioenergetics [J].
Akaike, Takaaki ;
Ida, Tomoaki ;
Wei, Fan-Yan ;
Nishida, Motohiro ;
Kumagai, Yoshito ;
Alam, Md. Morshedul ;
Ihara, Hideshi ;
Sawa, Tomohiro ;
Matsunaga, Tetsuro ;
Kasamatsu, Shingo ;
Nishimura, Akiyuki ;
Morita, Masanobu ;
Tomizawa, Kazuhito ;
Nishimura, Akira ;
Watanabe, Satoshi ;
Inaba, Kenji ;
Shima, Hiroshi ;
Tanuma, Nobuhiro ;
Jung, Minkyung ;
Fujii, Shigemoto ;
Watanabe, Yasuo ;
Ohmuraya, Masaki ;
Nagy, Peter ;
Feelisch, Martin ;
Fukuto, Jon M. ;
Motohashi, Hozumi .
NATURE COMMUNICATIONS, 2017, 8
[5]   The Capture of Cadmium by Reactive Polysulfides Attenuates Cadmium-Induced Adaptive Responses and Hepatotoxicity [J].
Akiyama, Masahiro ;
Shinkai, Yasuhiro ;
Unoki, Takamitsu ;
Shim, Ilseob ;
Ishii, Isao ;
Kumagai, Yoshito .
CHEMICAL RESEARCH IN TOXICOLOGY, 2017, 30 (12) :2209-2217
[6]   N-Acetylcysteine as an antioxidant and disulphide breaking agent: the reasons why [J].
Aldini, Giancarlo ;
Altomare, Alessandra ;
Baron, Giovanna ;
Vistoli, Giulio ;
Carini, Marina ;
Borsani, Luisa ;
Sergio, Francesco .
FREE RADICAL RESEARCH, 2018, 52 (07) :751-762
[7]   N-acetyl-cysteine exhibits potent anti-mycobacterial activity in addition to its known anti-oxidative functions [J].
Amaral, Eduardo P. ;
Conceicao, Elisabete L. ;
Costa, Diego L. ;
Rocha, Michael S. ;
Marinho, Jamocyr M. ;
Cordeiro-Santos, Marcelo ;
D'Imperio-Lima, Maria Regina ;
Barbosa, Theolis ;
Sher, Alan ;
Andrade, Bruno B. .
BMC MICROBIOLOGY, 2016, 16 :1-10
[8]  
Anderson R. D., 1992, SAFETY AMINO ACIDS U
[9]   Bifunctionality of a biofilm matrix protein controlled by redox state [J].
Arnaouteli, Sofia ;
Ferreira, Ana Sofia ;
Schor, Marieke ;
Morris, Ryan J. ;
Bromley, Keith M. ;
Jo, Jeanyoung ;
Cortez, Krista L. ;
Sukhodub, Tetyana ;
Prescott, Alan R. ;
Dietrich, Lars E. P. ;
MacPhee, Cait E. ;
Stanley-Wall, Nicola R. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2017, 114 (30) :E6184-E6191
[10]   THE ANTIOXIDANT ACTION OF N-ACETYLCYSTEINE - ITS REACTION WITH HYDROGEN-PEROXIDE, HYDROXYL RADICAL, SUPEROXIDE, AND HYPOCHLOROUS ACID [J].
ARUOMA, OI ;
HALLIWELL, B ;
HOEY, BM ;
BUTLER, J .
FREE RADICAL BIOLOGY AND MEDICINE, 1989, 6 (06) :593-597