Role of the Toll Like Receptor (TLR) Radical Cycle in Chronic Inflammation: Possible Treatments Targeting the TLR4 Pathway

被引:0
作者
Kurt Lucas
Michael Maes
机构
[1] Sportzenkoppel 54,Department of Psychiatry
[2] Piyavate Hospital,Department of Psychiatry
[3] Chulalongkorn University,undefined
[4] International PNI Reference Center,undefined
[5] Deakin University,undefined
来源
Molecular Neurobiology | 2013年 / 48卷
关键词
Toll-like receptor; LPS; Inflammation; Oxidative and nitrosative stress; Cytokines; Depression; Chronic fatigue;
D O I
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学科分类号
摘要
Activation of the Toll-like receptor 4 (TLR4) complex, a receptor of the innate immune system, may underpin the pathophysiology of many human diseases, including asthma, cardiovascular disorder, diabetes, obesity, metabolic syndrome, autoimmune disorders, neuroinflammatory disorders, schizophrenia, bipolar disorder, autism, clinical depression, chronic fatigue syndrome, alcohol abuse, and toluene inhalation. TLRs are pattern recognition receptors that recognize damage-associated molecular patterns and pathogen-associated molecular patterns, including lipopolysaccharide (LPS) from gram-negative bacteria. Here we focus on the environmental factors, which are known to trigger TLR4, e.g., ozone, atmosphere particulate matter, long-lived reactive oxygen intermediate, pentachlorophenol, ionizing radiation, and toluene. Activation of the TLR4 pathways may cause chronic inflammation and increased production of reactive oxygen and nitrogen species (ROS/RNS) and oxidative and nitrosative stress and therefore TLR-related diseases. This implies that drugs or substances that modify these pathways may prevent or improve the abovementioned diseases. Here we review some of the most promising drugs and agents that have the potential to attenuate TLR-mediated inflammation, e.g., anti-LPS strategies that aim to neutralize LPS (synthetic anti-LPS peptides and recombinant factor C) and TLR4/MyD88 antagonists, including eritoran, CyP, EM-163, epigallocatechin-3-gallate, 6-shogaol, cinnamon extract, N-acetylcysteine, melatonin, and molecular hydrogen. The authors posit that activation of the TLR radical (ROS/RNS) cycle is a common pathway underpinning many “civilization” disorders and that targeting the TLR radical cycle may be an effective method to treat many inflammatory disorders.
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页码:190 / 204
页数:14
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[1]  
Jeong E(2011)Intrinsic and extrinsic regulation of innate immune receptors Yonsei Med J 52 379-92
[2]  
Lee JY(2011)Novel interactions of a microbial superantigen with TLR2 and TLR4 differentially regulate IL-17 and Th17-associated cytokines Cell Microbiol 13 374-87
[3]  
Mu HH(2012)The role of TLR2 in infection and immunity Front Immunol 3 79-49
[4]  
Hasebe A(2008)Identification of oxidative stress and Toll-like receptor 4 signaling as a key pathway of acute lung injury Cell 133 235-33
[5]  
Van Schelt A(2011)Extra domain A of fibronectin primes leukotriene biosynthesis and stimulates neutrophil migration through activation of Toll-like receptor 4 Arthritis Rheum 63 1527-14
[6]  
Cole BC(2011)Insight into the mechanisms regulating immune homeostasis in health and disease Asian Pac J Allergy Immunol 29 1-7
[7]  
Oliveira-Nascimento L(2010)Toll-like receptor 2 and 4 genes influence susceptibility to adverse effects of traffic-related air pollution on childhood asthma Thorax 65 690-53
[8]  
Massari P(2012)Toll-like receptor (TLR2 and TLR4) polymorphisms and chronic obstructive pulmonary disease PLoS One 7 e43124-61
[9]  
Wetzler LM(2012)Differential expression of Toll-like receptor 4 and human monocyte subsets in acute myocardial infarction Atherosclerosis 221 249-88
[10]  
Imai Y(2012)The emerging role of TLR and innate immunity in cardiovascular disease Cardiol Res Pract 2012 181394-69