Transdiagnostic role of glutamate and white matter damage in neuropsychiatric disorders: A Systematic Review

Author(s):  
Ines Luttenbacher ◽  
Angela Philips ◽  
Reza Kazemi ◽  
Abed L. Hadipour ◽  
Isha Sanghvi ◽  
...  
2021 ◽  
Vol 15 ◽  
Author(s):  
Ann Alvar ◽  
Rachel Hahn Arkenberg ◽  
Bethany McGowan ◽  
Hu Cheng ◽  
Georgia A. Malandraki

Background: Swallowing disorders (dysphagia) can negatively impact quality of life and health. For clinicians and researchers seeking to improve outcomes for patients with dysphagia, understanding the neural control of swallowing is critical. The role of gray matter in swallowing control has been extensively documented, but knowledge is limited regarding the contributions of white matter. Our aim was to identify, evaluate, and summarize the populations, methods, and results of published articles describing the role of white matter in neural control of swallowing.Methods: We completed a systematic review with a multi-engine search following PRISMA-P 2015 standards. Two authors screened articles and completed blind full-text review and quality assessments using an adapted U.S. National Institute of Health's Quality Assessment. The senior author resolved any disagreements. Qualitative synthesis of evidence was completed.Results: The search yielded 105 non-duplicate articles, twenty-two of which met inclusion criteria. Twenty were rated as Good (5/22; 23%) or Fair (15/22; 68%) quality. Stroke was the most represented diagnosis (n = 20; 91%). All studies were observational, and half were retrospective cohort design. The majority of studies (13/22; 59%) quantified white matter damage with lesion-based methods, whereas 7/22 (32%) described intrinsic characteristics of white matter using methods like fractional anisotropy. Fifteen studies (68%) used instrumental methods for swallowing evaluations. White matter areas commonly implicated in swallowing control included the pyramidal tract, internal capsule, corona radiata, superior longitudinal fasciculus, external capsule, and corpus callosum. Additional noteworthy themes included: severity of white matter damage is related to dysphagia severity; bilateral white matter lesions appear particularly disruptive to swallowing; and white matter adaptation can facilitate dysphagia recovery. Gaps in the literature included limited sample size and populations, lack of in-depth evaluations, and issues with research design.Conclusion: Although traditionally understudied, there is sufficient evidence to conclude that white matter is critical in the neural control of swallowing. The reviewed studies indicated that white matter damage can be directly tied to swallowing deficits, and several white matter structures were implicated across studies. Further well-designed interdisciplinary research is needed to understand white matter's role in neural control of normal swallowing and in dysphagia recovery and rehabilitation.


Maturitas ◽  
2011 ◽  
Vol 70 (2) ◽  
pp. 160-163 ◽  
Author(s):  
Ariadna Besga ◽  
Monica Martinez-Cengotitabengoa ◽  
Itxaso González-Ortega ◽  
Miguel Gutierrez ◽  
Sara Barbeito ◽  
...  

2016 ◽  
Vol 16 (1) ◽  
Author(s):  
Nandita Vijayakumar ◽  
Cali Bartholomeusz ◽  
Thomas Whitford ◽  
Daniel F. Hermens ◽  
Barnaby Nelson ◽  
...  

2015 ◽  
Vol 21 (10) ◽  
pp. 1337-1346 ◽  
Author(s):  
Gianluca Serafini ◽  
Maurizio Pompili ◽  
Stefan Borgwardt ◽  
Enrico Giuffra ◽  
Oliver Howes ◽  
...  

2020 ◽  
Vol 78 (1) ◽  
pp. 13-22
Author(s):  
Anna M. Pietroboni ◽  
Annalisa Colombi ◽  
Tiziana Carandini ◽  
Elio Scarpini ◽  
Daniela Galimberti ◽  
...  

Just as multiple sclerosis (MS) has long been primarily considered a white matter (WM) disease, Alzheimer’s disease (AD) has for decades been regarded only as a grey matter disorder. However, convergent evidences have suggested that WM abnormalities are also important components of AD, at the same extent as axonal and neuronal loss is critically involved in MS pathophysiology since early clinical stages. These observations have motivated a more thorough investigation about the possible mechanisms that could link neuroinflammation and neurodegeneration, focusing on amyloid-β (Aβ). Neuroimaging studies have found that patients with AD have widespread WM abnormalities already at the earliest disease stages and prior to the presence of Aβ plaques. Moreover, a correlation between cerebrospinal fluid (CSF) Aβ levels and WM lesion load was found. On the other hand, recent studies suggest a predictive role for CSF Aβ levels in MS, possibly due in the first instance to the reduced capacity for remyelination, consequently to a higher risk of WM damage progression, and ultimately to neuronal loss. We undertook a review of the recent findings concerning the involvement of CSF Aβ levels in the MS disease course and of the latest evidence of AD related WM abnormalities, with the aim to discuss the potential causes that may connect WM damage and amyloid pathology.


Neuroscience ◽  
2019 ◽  
Vol 414 ◽  
pp. 255-264 ◽  
Author(s):  
Toshiki Inaba ◽  
Nobukazu Miyamoto ◽  
Kenichiro Hira ◽  
Yuji Ueno ◽  
Kazuo Yamashiro ◽  
...  

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