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http://dx.doi.org/10.3389/fmed.2020.594610DOI Listing

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Department of Nutritional Sciences, School of Human Ecology, College of Natural Sciences, Department of Women's Health & Pediatrics, Dell Medical School, Dell Pediatric Research Institute, Population Research Center, The University of Texas at Austin, 1400 Barbara Jordan Blvd., Austin, TX, 78723, USA.

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The corona virus (SARS-CoV-2) pandemic and the resulting long-term neurological complications in patients, known as long COVID, have renewed interest in the correlation between viral infections and neurodegenerative brain disorders. While many viruses can reach the central nervous system (CNS) causing acute or chronic infections (such as herpes simplex virus 1, HSV-1), the lack of a clear mechanistic link between viruses and protein aggregation into amyloids, a characteristic of several neurodegenerative diseases, has rendered such a connection elusive. Recently, we showed that viruses can induce aggregation of purified amyloidogenic proteins via the direct physicochemical mechanism of heterogeneous nucleation (HEN).

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Aims: This study aims to systematically analyze the global trends in glioma methylation research using bibliometric methodologies. We focus on identifying the scholarly trajectory and key research interests, and we utilize these insights to predict future research directions within the epigenetic context of glioma.

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