Literature DB >> 30847559

The contribution of astrocytes to the neuroinflammatory response in multiple sclerosis and experimental autoimmune encephalomyelitis.

Roberta Brambilla1,2,3.   

Abstract

Neuroinflammation is the coordinated response of the central nervous system (CNS) to threats to its integrity posed by a variety of conditions, including autoimmunity, pathogens and trauma. Activated astrocytes, in concert with other cellular elements of the CNS and immune system, are important players in the modulation of the neuroinflammatory response. During neurological disease, they produce and respond to cellular signals that often lead to dichotomous processes, which can promote further damage or contribute to repair. This occurs also in multiple sclerosis (MS), where astrocytes are now recognized as key components of its immunopathology. Evidence supporting this role has emerged not only from studies in MS patients, but also from animal models, among which the experimental autoimmune encephalomyelitis (EAE) model has proved especially instrumental. Based on this premise, the purpose of the present review is to summarize the current knowledge of astrocyte behavior in MS and EAE. Following a brief description of the pathological characteristics of the two diseases and the main functional roles of astrocytes in CNS physiology, we will delve into the specific responses of this cell population, analyzing MS and EAE in parallel. We will define the temporal and anatomical profile of astroglial activation, then focus on key processes they participate in. These include: (1) production and response to soluble mediators (e.g., cytokines and chemokines), (2) regulation of oxidative stress, and (3) maintenance of BBB integrity and function. Finally, we will review the state of the art on the available methods to measure astroglial activation in vivo in MS patients, and how this could be exploited to optimize diagnosis, prognosis and treatment decisions. Ultimately, we believe that integrating the knowledge obtained from studies in MS and EAE may help not only better understand the pathophysiology of MS, but also uncover new signals to be targeted for therapeutic intervention.

Entities:  

Keywords:  Astroglia; Demyelinating disorder; Experimental autoimmune encephalomyelitis; Multiple sclerosis; Neuroimmune disease; Neuroinflammation

Mesh:

Year:  2019        PMID: 30847559      PMCID: PMC6483860          DOI: 10.1007/s00401-019-01980-7

Source DB:  PubMed          Journal:  Acta Neuropathol        ISSN: 0001-6322            Impact factor:   17.088


  202 in total

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Authors:  Dongwei Wang; Margaret M Ayers; Deanne V Catmull; Lisa J Hazelwood; Claude C A Bernard; Jacqueline M Orian
Journal:  Glia       Date:  2005-08-15       Impact factor: 7.452

2.  Interleukin-6 expression in human multiple sclerosis lesions.

Authors:  L M Schönrock; G Gawlowski; W Brück
Journal:  Neurosci Lett       Date:  2000-11-10       Impact factor: 3.046

Review 3.  Astrocytes: biology and pathology.

Authors:  Michael V Sofroniew; Harry V Vinters
Journal:  Acta Neuropathol       Date:  2009-12-10       Impact factor: 17.088

4.  Interleukin-33 is released in spinal cord and suppresses experimental autoimmune encephalomyelitis in mice.

Authors:  H Chen; Y Sun; L Lai; H Wu; Y Xiao; B Ming; M Gao; H Zou; P Xiong; Y Xu; Z Tan; F Gong; F Zheng
Journal:  Neuroscience       Date:  2015-09-09       Impact factor: 3.590

5.  Induction of the genes for Cxcl9 and Cxcl10 is dependent on IFN-gamma but shows differential cellular expression in experimental autoimmune encephalomyelitis and by astrocytes and microglia in vitro.

Authors:  Sally L Carter; Marcus Müller; Peter M Manders; Iain L Campbell
Journal:  Glia       Date:  2007-12       Impact factor: 7.452

6.  Magnetic resonance spectroscopy markers of disease progression in multiple sclerosis.

Authors:  Sara Llufriu; John Kornak; Helene Ratiney; Joonmi Oh; Don Brenneman; Bruce A Cree; Mehul Sampat; Stephen L Hauser; Sarah J Nelson; Daniel Pelletier
Journal:  JAMA Neurol       Date:  2014-07-01       Impact factor: 18.302

7.  Angiogenesis is present in experimental autoimmune encephalomyelitis and pro-angiogenic factors are increased in multiple sclerosis lesions.

Authors:  Timothy J Seabrook; Amanda Littlewood-Evans; Volker Brinkmann; Bernadette Pöllinger; Christian Schnell; Peter C Hiestand
Journal:  J Neuroinflammation       Date:  2010-12-22       Impact factor: 8.322

8.  Cell-selective knockout and 3D confocal image analysis reveals separate roles for astrocyte-and endothelial-derived CCL2 in neuroinflammation.

Authors:  Debayon Paul; Shujun Ge; Yen Lemire; Evan R Jellison; David R Serwanski; Nancy H Ruddle; Joel S Pachter
Journal:  J Neuroinflammation       Date:  2014-01-21       Impact factor: 8.322

9.  IFN-γ signaling to astrocytes protects from autoimmune mediated neurological disability.

Authors:  Claudia Hindinger; Cornelia C Bergmann; David R Hinton; Timothy W Phares; Gabriel I Parra; Shabbir Hussain; Carine Savarin; Roscoe D Atkinson; Stephen A Stohlman
Journal:  PLoS One       Date:  2012-07-27       Impact factor: 3.240

10.  Dystroglycan is selectively cleaved at the parenchymal basement membrane at sites of leukocyte extravasation in experimental autoimmune encephalomyelitis.

Authors:  Smriti Agrawal; Per Anderson; Madeleine Durbeej; Nico van Rooijen; Fredrik Ivars; Ghislain Opdenakker; Lydia M Sorokin
Journal:  J Exp Med       Date:  2006-04-03       Impact factor: 14.307

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  61 in total

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Authors:  Yuan Zhang; Xing Li; Bogoljub Ciric; Mark T Curtis; Wan-Jun Chen; Abdolmohamad Rostami; Guang-Xian Zhang
Journal:  Proc Natl Acad Sci U S A       Date:  2020-04-06       Impact factor: 11.205

2.  Oligodendrocytes modulate the immune-inflammatory response in EAE via TNFR2 signaling.

Authors:  Pernille M Madsen; Haritha L Desu; Juan Pablo de Rivero Vaccari; Yoleinny Florimon; Ditte G Ellman; Robert W Keane; Bettina H Clausen; Kate L Lambertsen; Roberta Brambilla
Journal:  Brain Behav Immun       Date:  2019-11-27       Impact factor: 7.217

3.  Experimental autoimmune encephalopathy (EAE)-induced hippocampal neuroinflammation and memory deficits are prevented with the non-opioid TLR2/TLR4 antagonist (+)-naltrexone.

Authors:  Andrew J Kwilasz; Laurel S Todd; Julissa C Duran-Malle; Anouk E W Schrama; Eric H Mitten; Tracey A Larson; Madison A Clements; Kevin M Harris; Scott T Litwiler; Xiaohui Wang; Anne-Marie Van Dam; Steven F Maier; Kenner C Rice; Linda R Watkins; Ruth M Barrientos
Journal:  Behav Brain Res       Date:  2020-09-06       Impact factor: 3.332

4.  Neuregulin-1 beta 1 is implicated in pathogenesis of multiple sclerosis.

Authors:  Hardeep Kataria; Christopher G Hart; Arsalan Alizadeh; Michael Cossoy; Deepak K Kaushik; Charles N Bernstein; Ruth Ann Marrie; V Wee Yong; Soheila Karimi-Abdolrezaee
Journal:  Brain       Date:  2021-02-12       Impact factor: 13.501

5.  IL-9-triggered lncRNA Gm13568 regulates Notch1 in astrocytes through interaction with CBP/P300: contribute to the pathogenesis of experimental autoimmune encephalomyelitis.

Authors:  Xiaomei Liu; Feng Zhou; Weixiao Wang; Guofang Chen; Qingxiu Zhang; Ruixue Lv; Zijun Zhao; Xiangyang Li; Qian Yu; Jessica M Meves; Hui Hua; Xiaocui Li; Xiaotian Wang; Hong Sun; Dianshuai Gao
Journal:  J Neuroinflammation       Date:  2021-05-11       Impact factor: 8.322

Review 6.  Cholinergic Modulation of the Immune System in Neuroinflammatory Diseases.

Authors:  Marcella Reale; Erica Costantini
Journal:  Diseases       Date:  2021-04-12

7.  Involvement of Astrocytes and microRNA Dysregulation in Neurodegenerative Diseases: From Pathogenesis to Therapeutic Potential.

Authors:  Yang Bai; Xing Su; Lianhua Piao; Zheng Jin; Rihua Jin
Journal:  Front Mol Neurosci       Date:  2021-03-17       Impact factor: 5.639

8.  Rg3-enriched Korean Red Ginseng extract inhibits blood-brain barrier disruption in an animal model of multiple sclerosis by modulating expression of NADPH oxidase 2 and 4.

Authors:  Min Jung Lee; Jong Hee Choi; Jinhee Oh; Young Hyun Lee; Jun-Gyo In; Byung-Joon Chang; Seung-Yeol Nah; Ik-Hyun Cho
Journal:  J Ginseng Res       Date:  2020-09-11       Impact factor: 6.060

Review 9.  Advances in the Pathogenesis of Auto-antibody-Induced Cerebellar Synaptopathies.

Authors:  Hiroshi Mitoma; Mario Manto
Journal:  Cerebellum       Date:  2022-01-22       Impact factor: 3.847

Review 10.  Astrocyte phenotypes: Emphasis on potential markers in neuroinflammation.

Authors:  Iva Bozic; Danijela Savic; Irena Lavrnja
Journal:  Histol Histopathol       Date:  2020-11-23       Impact factor: 2.303

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