Focal sensory-motor status epilepticus in multiple sclerosis due to a new cortical lesion. An EEG–fMRI co-registration study

2011 ◽  
Vol 2011 ◽  
pp. 91
Author(s):  
A. Minagar
Seizure ◽  
2010 ◽  
Vol 19 (8) ◽  
pp. 525-528 ◽  
Author(s):  
Elisa Gasparini ◽  
Francesca Benuzzi ◽  
Matteo Pugnaghi ◽  
Alessandra Ariatti ◽  
Patrizia Sola ◽  
...  

Cells ◽  
2021 ◽  
Vol 10 (7) ◽  
pp. 1712
Author(s):  
Roberta Magliozzi ◽  
Francesco Pezzini ◽  
Mairi Pucci ◽  
Stefania Rossi ◽  
Francesco Facchiano ◽  
...  

An imbalance of TNF signalling in the inflammatory milieu generated by meningeal immune cell infiltrates in the subarachnoid space in multiple sclerosis (MS), and its animal model may lead to increased cortical pathology. In order to explore whether this feature may be present from the early stages of MS and may be associated with the clinical outcome, the protein levels of TNF, sTNF-R1 and sTNF-R2 were assayed in CSF collected from 122 treatment-naïve MS patients and 36 subjects with other neurological conditions at diagnosis. Potential correlations with other CSF cytokines/chemokines and with clinical and imaging parameters at diagnosis (T0) and after 2 years of follow-up (T24) were evaluated. Significantly increased levels of TNF (fold change: 7.739; p < 0.001), sTNF-R1 (fold change: 1.693; p < 0.001) and sTNF-R2 (fold change: 2.189; p < 0.001) were detected in CSF of MS patients compared to the control group at T0. Increased TNF levels in CSF were significantly (p < 0.01) associated with increased EDSS change (r = 0.43), relapses (r = 0.48) and the appearance of white matter lesions (r = 0.49). CSF levels of TNFR1 were associated with cortical lesion volume (r = 0.41) at T0, as well as with new cortical lesions (r = 0.56), whilst no correlation could be found between TNFR2 levels in CSF and clinical or MRI features. Combined correlation and pathway analysis (ingenuity) of the CSF protein pattern associated with TNF expression (encompassing elevated levels of BAFF, IFN-γ, IL-1β, IL-10, IL-8, IL-16, CCL21, haptoglobin and fibrinogen) showed a particular relationship to the interaction between innate and adaptive immune response. The CSF sTNF-R1-associated pattern (encompassing high levels of CXCL13, TWEAK, LIGHT, IL-35, osteopontin, pentraxin-3, sCD163 and chitinase-3-L1) was mainly related to altered T cell and B cell signalling. Finally, the CSF TNFR2-associated pattern (encompassing high CSF levels of IFN-β, IFN-λ2, sIL-6Rα) was linked to Th cell differentiation and regulatory cytokine signalling. In conclusion, dysregulation of TNF and TNF-R1/2 pathways associates with specific clinical/MRI profiles and can be identified at a very early stage in MS patients, at the time of diagnosis, contributing to the prediction of the disease outcome.


Author(s):  
Fatemeh ayoobi ◽  
Parvin khalili ◽  
Hossein azin ◽  
Shohreh Shahrokhabadi ◽  
Mahdieh azin

2018 ◽  
Vol 25 (4) ◽  
pp. 618-621 ◽  
Author(s):  
Emilie Panicucci ◽  
Mikael Cohen ◽  
Veronique Bourg ◽  
Fanny Rocher ◽  
Pierre Thomas ◽  
...  

Background: Dalfampridine extended release (DAL) is a broad-spectrum voltage-gated potassium channel blocker that is indicated in multiple sclerosis to improve the nerve conduction of demyelinated axons. Seizures are a known side effect of DAL, which is contraindicated in patients with a history of epilepsy. Objective: Three cases of multiple sclerosis (MS) with de novo convulsive status epilepticus (CSE) probably related to dalfampridine administration are described. Methods: No patients had a history of seizures or renal impairment. Biological tests were normal. A brain magnetic resonance imaging (MRI) showed diffuse cortical and subcortical atrophy without active inflammatory lesions. Results: All three patients presented with CSE that was attributed to DAL and so was discontinued. Conclusion: These case reports illustrate that, aside from seizures, de novo CSE is a potential complication of MS patients treated with DAL.


BIOPHILIA ◽  
2016 ◽  
Vol 2016 (2) ◽  
pp. 26-26 ◽  
Author(s):  
R. Saggini ◽  
G. Barassi ◽  
E. Ancona ◽  
S.M. Carmignano ◽  
A. Sablone ◽  
...  

2019 ◽  
Vol 40 (7) ◽  
pp. 1162-1169 ◽  
Author(s):  
J. Maranzano ◽  
M. Dadar ◽  
D.A. Rudko ◽  
D. De Nigris ◽  
C. Elliott ◽  
...  

2019 ◽  
Vol 26 (12) ◽  
pp. 1497-1509 ◽  
Author(s):  
Elena Herranz ◽  
Céline Louapre ◽  
Constantina Andrada Treaba ◽  
Sindhuja T Govindarajan ◽  
Russell Ouellette ◽  
...  

Background: Neuroinflammation with microglia activation is thought to be closely related to cortical multiple sclerosis (MS) lesion pathogenesis. Objective: Using 11C-PBR28 and 7 Tesla (7T) imaging, we assessed in 9 relapsing–remitting multiple sclerosis (RRMS) and 10 secondary progressive multiple sclerosis (SPMS) patients the following: (1) microglia activation in lesioned and normal-appearing cortex, (2) cortical lesion inflammatory profiles, and (3) the relationship between neuroinflammation and cortical integrity. Methods: Mean 11C-PBR28 uptake was measured in focal cortical lesions, cortical areas with 7T quantitative T2* (q-T2*) abnormalities, and normal-appearing cortex. The relative difference in cortical 11C-PBR28 uptake between patients and 14 controls was used to classify cortical lesions as either active or inactive. Disease burden was investigated according to cortical lesion inflammatory profiles. The relation between q-T2* and 11C-PBR28 uptake along the cortex was assessed. Results: 11C-PBR28 uptake was abnormally high in cortical lesions in RRMS and SPMS; in SPMS, tracer uptake was significantly increased also in normal-appearing cortex. 11C-PBR28 uptake and q-T2* correlated positively in many cortical areas, negatively in some regions. Patients with high cortical lesion inflammation had worse clinical outcome and higher intracortical lesion burden than patients with low inflammation. Conclusion: 11C-PBR28 and 7T imaging reveal distinct profiles of cortical inflammation in MS, which are related to disease burden.


2020 ◽  
Vol 31 (1) ◽  
pp. 439-447 ◽  
Author(s):  
Maxime Donadieu ◽  
Hannah Kelly ◽  
Diego Szczupak ◽  
Jing-Ping Lin ◽  
Yeajin Song ◽  
...  

Abstract Cortical lesions are a primary driver of disability in multiple sclerosis (MS). However, noninvasive detection of cortical lesions with in vivo magnetic resonance imaging (MRI) remains challenging. Experimental autoimmune encephalomyelitis (EAE) in the common marmoset is a relevant animal model of MS for investigating the pathophysiological mechanisms leading to brain damage. This study aimed to characterize cortical lesions in marmosets with EAE using ultrahigh-field (7 T) MRI and histological analysis. Tissue preparation was optimized to enable the acquisition of high-spatial resolution (50-μm isotropic) T2*-weighted images. A total of 14 animals were scanned in this study, and 70% of the diseased animals presented at least one cortical lesion on postmortem imaging. Cortical lesions identified on MRI were verified with myelin proteolipid protein immunostaining. An optimized T2*-weighted sequence was developed for in vivo imaging and shown to capture 65% of cortical lesions detected postmortem. Immunostaining confirmed extensive demyelination with preserved neuronal somata in several cortical areas of EAE animals. Overall, this study demonstrates the relevance and feasibility of the marmoset EAE model to study cortical lesions, among the most important yet least understood features of MS.


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