Features of Microglia and Neuroinflammation Relevant to Environmental Exposure and Neurotoxicity

被引:275
作者
Kraft, Andrew D. [2 ]
Harry, G. Jean [1 ]
机构
[1] NIEHS, Neurotoxicol Grp, Lab Toxicol & Pharmacol, NIH, Res Triangle Pk, NC 27709 USA
[2] US EPA, Oak Ridge Inst Sci & Educ Res Participant, Natl Ctr Environm Assessment, Off Res & Dev, Arlington, VA 22202 USA
基金
美国国家卫生研究院;
关键词
neuroinflammation; microglia; neurotoxicity; neurodegeneration; cytokines; environmental exposure; CENTRAL-NERVOUS-SYSTEM; BLOOD-BRAIN-BARRIER; DIESEL EXHAUST PARTICLES; TOLL-LIKE RECEPTORS; NITRIC-OXIDE SYNTHASE; NECROSIS-FACTOR-ALPHA; NONSTEROIDAL ANTIINFLAMMATORY DRUGS; OXIDATIVE STRESS CONTRIBUTES; GLYCOSYLATION END-PRODUCTS; FOCAL CEREBRAL-ISCHEMIA;
D O I
10.3390/ijerph8072980
中图分类号
X [环境科学、安全科学];
学科分类号
083001 [环境科学];
摘要
Microglia are resident cells of the brain involved in regulatory processes critical for development, maintenance of the neural environment, injury and repair. They belong to the monocytic-macrophage lineage and serve as brain immune cells to orchestrate innate immune responses; however, they are distinct from other tissue macrophages due to their relatively quiescent phenotype and tight regulation by the CNS microenvironment. Microglia actively survey the surrounding parenchyma and respond rapidly to changes such that any disruption to neural architecture or function can contribute to the loss in regulation of the microglia phenotype. In many models of neurodegeneration and neurotoxicity, early events of synaptic degeneration and neuronal loss are accompanied by an inflammatory response including activation of microglia, perivascular monocytes, and recruitment of leukocytes. In culture, microglia have been shown to be capable of releasing several potentially cytotoxic substances, such as reactive oxygen intermediates, nitric oxide, proteases, arachidonic acid derivatives, excitatory amino acids, and cytokines; however, they also produce various neurotrophic factors and quench damage from free radicals and excitotoxins. As the primary source for pro-inflammatory cytokines, microglia are implicated as pivotal mediators of neuroinflammation and can induce or modulate a broad spectrum of cellular responses. Neuroinflammation should be considered as a balanced network of processes whereby subtle modifications can shift the cells toward disparate outcomes. For any evaluation of neuroinflammation and microglial responses, within the framework of neurotoxicity or degeneration, one key question in determining the consequence of neuroinflammation is whether the response is an initiating event or the consequence of tissue damage. As examples of environmental exposure-related neuroinflammation in the literature, we provide an evaluation of data on manganese and diesel exhaust particles.
引用
收藏
页码:2980 / 3018
页数:39
相关论文
共 283 条
[1]
The fibrin-derived γ377-395 peptide inhibits microglia activation and suppresses relapsing paralysis in central nervous system autoimmune disease [J].
Adams, Ryan A. ;
Bauer, Jan ;
Flick, Matthew J. ;
Sikorski, Shoana L. ;
Nuriel, Tal ;
Lassmann, Hans ;
Degen, Jay L. ;
Akassoglou, Katerina .
JOURNAL OF EXPERIMENTAL MEDICINE, 2007, 204 (03) :571-582
[2]
Local self-renewal can sustain CNS microglia maintenance and function throughout adult life [J].
Ajami, Bahareh ;
Bennett, Jami L. ;
Krieger, Charles ;
Tetzlaff, Wolfram ;
Rossi, Fabio M. V. .
NATURE NEUROSCIENCE, 2007, 10 (12) :1538-1543
[3]
Pathogen recognition and innate immunity [J].
Akira, S ;
Uematsu, S ;
Takeuchi, O .
CELL, 2006, 124 (04) :783-801
[4]
Inflammation and Alzheimer's disease [J].
Akiyama, H ;
Barger, S ;
Barnum, S ;
Bradt, B ;
Bauer, J ;
Cole, GM ;
Cooper, NR ;
Eikelenboom, P ;
Emmerling, M ;
Fiebich, BL ;
Finch, CE ;
Frautschy, S ;
Griffin, WST ;
Hampel, H ;
Hull, M ;
Landreth, G ;
Lue, LF ;
Mrak, R ;
Mackenzie, IR ;
McGeer, PL ;
O'Banion, MK ;
Pachter, J ;
Pasinetti, G ;
Plata-Salaman, C ;
Rogers, J ;
Rydel, R ;
Shen, Y ;
Streit, W ;
Strohmeyer, R ;
Tooyoma, I ;
Van Muiswinkel, FL ;
Veerhuis, R ;
Walker, D ;
Webster, S ;
Wegrzyniak, B ;
Wenk, G ;
Wyss-Coray, T .
NEUROBIOLOGY OF AGING, 2000, 21 (03) :383-421
[5]
Immune function of microglia [J].
Aloisi, F .
GLIA, 2001, 36 (02) :165-179
[6]
Diesel exhaust particles induce matrix metalloprotease-1 in human lung epithelial cells via a NADP(H) oxidase/NOX4 redox-dependent mechanism [J].
Amara, Nadia ;
Bachoual, Rafik ;
Desmard, Mathieu ;
Golda, Slawomir ;
Guichard, Cecile ;
Lanone, Sophie ;
Aubier, Michel ;
Ogier-Denis, Eric ;
Boczkowski, Jorge .
AMERICAN JOURNAL OF PHYSIOLOGY-LUNG CELLULAR AND MOLECULAR PHYSIOLOGY, 2007, 293 (01) :L170-L181
[7]
Glial cells in neurotoxicity development [J].
Aschner, M ;
Allen, JW ;
Kimelberg, HK ;
LoPachin, RM ;
Streit, WJ .
ANNUAL REVIEW OF PHARMACOLOGY AND TOXICOLOGY, 1999, 39 :151-173
[8]
Manganese: Recent advances in understanding its transport and neurotoxicity [J].
Aschner, Michael ;
Guilarte, Tomas R. ;
Schneider, Jay S. ;
Zheng, Wei .
TOXICOLOGY AND APPLIED PHARMACOLOGY, 2007, 221 (02) :131-147
[9]
Toll-like receptor 2 signaling in response to brain injury: An innate bridge to neuroinflammation [J].
Babcock, Alicia A. ;
Wirenfeldt, Martin ;
Holm, Thomas ;
Nielsen, Helle H. ;
Dissing-Olesen, Lasse ;
Toft-Hansen, Henrik ;
Millward, Jason M. ;
Landmann, Regine ;
Rivest, Serge ;
Finsen, Bente ;
Owens, Trevor .
JOURNAL OF NEUROSCIENCE, 2006, 26 (49) :12826-12837
[10]
Innate and adaptive immune responses of the central nervous system [J].
Bailey, SL ;
Carpentier, PA ;
McMahon, EJ ;
Begolka, WS ;
Miller, SD .
CRITICAL REVIEWS IN IMMUNOLOGY, 2006, 26 (02) :149-188