scholarly journals Retrograde trans-synaptic visual pathway degeneration in multiple sclerosis: A case series

2017 ◽  
Vol 23 (7) ◽  
pp. 1035-1039 ◽  
Author(s):  
Omar Al-Louzi ◽  
Julia Button ◽  
Scott D Newsome ◽  
Peter A Calabresi ◽  
Shiv Saidha

Background: Trans-synaptic degeneration (TSD) describes the propagation of neuronal injury through synaptic pathways in the human nervous system and may be linked to the accelerated retinal atrophy seen in multiple sclerosis (MS). Results: We report six cases where homonymous, hemi-macular ganglion cell + inner plexiform (GCIP) thickness reduction was seen in conjunction with posterior visual pathway lesions. Macular microcystoid changes of the inner nuclear layer (INL) were seen in a subset of three subjects. Conclusion: Our findings highlight the utility of assessing regional GCIP changes to identify potential retrograde TSD in MS and demonstrate that INL changes may be an accompaniment in such instances.

Neurology ◽  
2021 ◽  
pp. 10.1212/WNL.0000000000011933
Author(s):  
Jeffrey Lambe ◽  
Hunter Risher ◽  
Angeliki G. Filippatou ◽  
Olwen C. Murphy ◽  
Elias S. Sotirchos ◽  
...  

Objective:To investigate the effects of rituximab on retinal atrophy in patients with relapsing-remitting multiple sclerosis (RRMS), we performed serial optical coherence tomography (OCT) scans among a cohort of RRMS patients on rituximab, and compared rates of ganglion cell+inner plexiform layer (GCIPL) atrophy to those observed among age- and sex-matched glatiramer acetate (GA)- and natalizumab-treated RRMS patients, and healthy controls (HCs).Methods:In this observational study, patients with RRMS treated with a single disease-modifying therapy, and HCs, were followed with serial OCT for a median duration of 2.8 years. Participants with uncontrolled hypertension, diabetes mellitus, or glaucoma, and eyes with optic neuritis ≤6 months prior to baseline OCT, or during follow-up, were excluded. Statistical analyses were performed using linear mixed-effects regression.Results:During the overall follow-up period, rates of GCIPL atrophy were -0.28±0.11µm/yr among rituximab-treated RRMS patients (n=35). This was similar to GA-treated (n=49; -0.33±0.05µm/yr; p=0.69) and natalizumab-treated patients (n=88; -0.17±0.10µm/yr; p=0.13), and faster than HCs (n=78; -0.15±0.03µm/yr; p=0.006). Rituximab-treated patients exhibited 0.55±0.23µm/yr faster rates of GCIPL atrophy during the first 12 months of treatment, relative to afterwards (n=25; p=0.02), during which period GCIPL atrophy rates were -0.14±0.13µm/yr.Conclusions:Retinal atrophy in RRMS is modulated by rituximab. Greater attenuation of retinal atrophy may occur after 12 months of rituximab treatment, following which time GCIPL atrophy rates are similar to those observed among natalizumab-treated RRMS patients and HCs. Our findings raise the possibility that the neuroprotective therapeutic response with rituximab in RRMS may take up to 12 months, though should be confirmed by larger studies.Classification of evidence:This study provides Class IV evidence on the difference in rate of change of the ganglion cell+inner plexiform layer thickness in patients with RRMS, comparing rituximab to other DMTs.


2020 ◽  
Vol 11 (01) ◽  
pp. 205-210
Author(s):  
Joe James ◽  
James Jose ◽  
V. Abdul Gafoor ◽  
B. Smita ◽  
Neetha Balaram ◽  
...  

Abstract Myelin oligodendrocyte glycoprotein (MOG) antibody disease is a novel central nervous system autoimmune disorder which forms part of aquaporin 4 (AQP-4) negative, neuromyelitis optica (NMO) spectrum disorder. It has a distinct clinical profile, neuroimaging features and courses from AQP-4 positive NMO and multiple sclerosis. This article is a case series of six patients with MOG antibody disease with longitudinal follow-up for up to 8 months.


Neurology ◽  
2019 ◽  
Vol 94 (3) ◽  
pp. e323-e329 ◽  
Author(s):  
Fabian Mühlemann ◽  
Hilary Grabe ◽  
Anthony Fok ◽  
Franca Wagner ◽  
Dominik Brügger ◽  
...  

ObjectiveTo determine the temporal evolution, morphology, and frequency of macular ganglion cell atrophy in patients with retrochiasmal lesions of the visual pathway.MethodsIn a consecutive retrospective case series, we identified 47 patients with homonymous hemianopia and accessible macular optical coherence tomography scans. We estimated the time of lesion onset and the location of the lesion within the afferent visual pathway. Using semiautomatic layer segmentation, we determined ganglion cell layer thickness in areas projecting to the side of the retrochiasmal lesion and compared it with ganglion cell layer thickness on the healthy side.ResultsWe found that retrochiasmal lesions at any level may be associated with an atrophy of ganglion cells. This atrophy respects the vertical midline through the fovea and thus the anatomic separation of the nasal and temporal visual field. The vertical line separating the affected from the unaffected side has significantly less tilt as compared with the disc–fovea angle. Lesions of the optic tract are associated with earlier macular ganglion cell atrophy than retrogeniculate lesions. Macular ganglion cell atrophy may be present in cases with normal peripapillary nerve fiber layer analysis and vice versa.ConclusionsMacular ganglion cell layer thickness shows a topographic hemiatrophy in retrochiasmal lesions, which manifests earlier for tract lesions than for retrogeniculate lesions. This additional examination of ganglion cell homonymous hemiatrophy has a higher sensitivity in detecting retrograde transsynaptic degeneration than the analysis of the peripapillary nerve fiber layer alone.


Brain ◽  
2021 ◽  
Vol 144 (3) ◽  
pp. 848-862
Author(s):  
Marco Pisa ◽  
Tommaso Croese ◽  
Gloria Dalla Costa ◽  
Simone Guerrieri ◽  
Su-Chun Huang ◽  
...  

Abstract Optical coherence tomography (OCT) is gaining increasing relevance in the assessment of patients with multiple sclerosis. Converging evidence point to the view that neuro-retinal changes, in eyes without acute optic neuritis, reflect inflammatory and neurodegenerative processes taking place throughout the CNS. The present study aims at exploring the usefulness of OCT as a marker of inflammation and disease burden in the earliest phases of the disease. Thus, a cohort of 150 consecutive patients underwent clinical, neurophysiological and brain MRI assessment as well as lumbar puncture as part of their diagnostic workup for a neurological episode suggestive of inflammatory CNS disorder; among those 32 patients had another previous misdiagnosed episode. For the present study, patients also received a visual pathway assessment (OCT, visual evoked potentials, visual acuity), measurement of CSF inflammatory markers (17 cytokines-chemokines, extracellular vesicles of myeloid origin), and dosage of plasma neurofilaments. Subclinical optic nerve involvement is frequently found in clinically isolated syndromes by visual evoked potentials (19.2%). OCT reveals ganglion cell layer asymmetries in 6.8% of patients; retinal fibre layer asymmetries, despite being more frequent (17.8%), display poor specificity. The presence of subclinical involvement is associated with a greater disease burden. Second, ganglion cell layer thinning reflects the severity of disease involvement even beyond the anterior optic pathway. In fact, the ganglion cell layer in eyes without evidence of subclinical optic involvement is correlated with Expanded Disability Status Scale, low contrast visual acuity, disease duration, brain lesion load, presence of gadolinium enhancing lesions, abnormalities along motor and somatosensory evoked potentials, and frequency of CSF-specific oligoclonal bands. Third, the inner nuclear layer thickens in a post-acute (1.1–3.7 months) phase after a relapse, and this phenomenon is counteracted by steroid treatment. Likewise, a longitudinal analysis on 65 patients shows that this swelling is transient and returns to normal values after 1 year follow-up. Notwithstanding, the clinical, MRI, serological and CSF markers of disease activity considered in the study are strictly associated with one another, but none of them are associated with the inner nuclear layer. Our findings challenge the current hypothesis that the inner nuclear layer is an acute phase marker of inflammatory activity. The present study suggests that instrumental evidence of subclinical optic nerve involvement is associated with a greater disease burden in clinically isolated syndrome. Neuro-retinal changes are present since the earliest phases of the disease and yield important information regarding the neurodegenerative and inflammatory processes occurring in the CNS.


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