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1.
Int J Mol Sci ; 20(4)2019 Feb 25.
Artículo en Inglés | MEDLINE | ID: mdl-30823515

RESUMEN

BACKGROUND: Spinal cord (SC) lesions in Theiler's murine encephalomyelitis virus induced demyelinating disease (TMEV-IDD) resemble important features of brain lesions in progressive multiple sclerosis (MS) including inflammation, demyelination, and axonal damage. The aim of the present study was a comparison of SC lesions in MS and TMEV-IDD focusing on spatial and temporal distribution of demyelination, inflammation, SC atrophy (SCA), and axonal degeneration/loss in major descending motor pathways. METHODS: TMEV and mock-infected mice were investigated clinically once a week. SC tissue was collected at 42, 98, 147, and 196 days post infection, and investigated using hematoxylin and eosin (HE) staining, immunohistochemistry targeting myelin basic protein (demyelination), Mac3 (microglia/macrophages), phosphorylated neurofilaments (axonal damage) and transmission electron microscopy. RESULTS: Demyelination prevailed in SC white matter in TMEV-IDD, contrasting a predominant gray matter involvement in MS. TMEV-infected mice revealed a significant loss of axons similar to MS. Ultrastructural analysis in TMEV-IDD revealed denuded axons, degenerative myelin changes, axonal degeneration, as well as remyelination. SCA is a consistent finding in the SC of MS patients and was also detected at a late time point in TMEV-IDD. CONCLUSION: This comparative study further indicates the suitability of TMEV-IDD as animal model also for the investigation of progressive SC lesions in MS.


Asunto(s)
Enfermedades Desmielinizantes/patología , Enfermedades Desmielinizantes/virología , Modelos Animales de Enfermedad , Esclerosis Múltiple/patología , Enfermedades de la Médula Espinal/patología , Médula Espinal/patología , Theilovirus , Animales , Axones/patología , Femenino , Inmunohistoquímica/métodos , Ratones
2.
Apoptosis ; 23(2): 170-186, 2018 02.
Artículo en Inglés | MEDLINE | ID: mdl-29435686

RESUMEN

Theiler's murine encephalomyelitis (TME) is caused by the TME virus (TMEV) and represents an important animal model for multiple sclerosis (MS). Oligodendroglial apoptosis and reduced apoptotic elimination of encephalitogenic leukocytes seem to participate in autoimmune demyelination in MS. The present study quantified apoptotic cells in BeAn-TMEV-induced spinal cord white matter lesions at 14, 42, 98, and 196 days post infection (dpi) using immunostaining. Apoptotic cells were identified by transmission electron microscopy and double-immunofluorescence. The mRNA expression of apoptosis-related genes was investigated using microarray analysis. Oligodendroglial apoptosis was already detected in the predemyelinating phase at 14 dpi. Apoptotic cell numbers peaked at 42 dpi and decreased until 196 dpi partly due to reduced T cell apoptosis. In addition to genes involved in the classical pathways of apoptosis induction, microarray analysis detected the expression of genes related to alternative mechanisms of cell death such as pyroptosis, necroptosis, and endoplasmic reticulum stress. Consequently, oligodendroglial apoptosis is involved in the initiation of the TME demyelination process, whereas the development of apoptosis resistance of T cells potentially favors the maintenance of inflammation and myelin loss.


Asunto(s)
Apoptosis , Esclerosis Múltiple/virología , Médula Espinal/virología , Theilovirus/fisiología , Animales , Muerte Celular , Modelos Animales de Enfermedad , Femenino , Humanos , Ratones , Esclerosis Múltiple/patología , Esclerosis Múltiple/fisiopatología , Oligodendroglía/citología , Oligodendroglía/metabolismo , Médula Espinal/metabolismo , Médula Espinal/patología , Médula Espinal/fisiopatología , Linfocitos T/citología , Linfocitos T/metabolismo
3.
Brain Pathol ; 25(6): 712-23, 2015 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-25495532

RESUMEN

Microglia and macrophages play a central role for demyelination in Theiler's murine encephalomyelitis (TME) virus infection, a commonly used infectious model for chronic-progressive multiple sclerosis. In order to determine the dynamic changes of microglia/macrophage polarization in TME, the spinal cord of Swiss Jim Lambert (SJL) mice was investigated by gene expression profiling and immunofluorescence. Virus persistence and demyelinating leukomyelitis were confirmed by immunohistochemistry and histology. Electron microscopy revealed continuous myelin loss together with abortive myelin repair during the late chronic infection phase indicative of incomplete remyelination. A total of 59 genes out of 151 M1- and M2-related genes were differentially expressed in TME virus-infected mice over the study period. The onset of virus-induced demyelination was associated with a dominating M1 polarization, while mounting M2 polarization of macrophages/microglia together with sustained prominent M1-related gene expression was present during the chronic-progressive phase. Molecular results were confirmed by immunofluorescence, showing an increased spinal cord accumulation of CD16/32(+) M1-, arginase-1(+) M2- and Ym1(+) M2-type cells associated with progressive demyelination. The present study provides a comprehensive database of M1-/M2-related gene expression involved in the initiation and progression of demyelination supporting the hypothesis that perpetuating interaction between virus and macrophages/microglia induces a vicious circle with persistent inflammation and impaired myelin repair in TME.


Asunto(s)
Infecciones por Cardiovirus/metabolismo , Encefalomielitis/metabolismo , Macrófagos/metabolismo , Microglía/metabolismo , Theilovirus , Animales , Infecciones por Cardiovirus/patología , Encefalomielitis/patología , Femenino , Técnica del Anticuerpo Fluorescente , Inmunohistoquímica , Macrófagos/ultraestructura , Macrófagos/virología , Ratones , Análisis por Micromatrices , Microglía/ultraestructura , Microglía/virología , Microscopía Electrónica , Vaina de Mielina/patología , Vaina de Mielina/ultraestructura , Neuroinmunomodulación/fisiología , Médula Espinal/metabolismo , Médula Espinal/ultraestructura , Médula Espinal/virología
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