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Virus World provides a daily blog of the latest news in the Virology field and the COVID-19 pandemic. News on new antiviral drugs, vaccines, diagnostic tests, viral outbreaks, novel viruses and milestone discoveries are curated by expert virologists. Highlighted news include trending and most cited scientific articles in these fields with links to the original publications. Stay up-to-date with the most exciting discoveries in the virus world and the last therapies for COVID-19 without spending hours browsing news and scientific publications. Additional comments by experts on the topics are available in Linkedin (https://www.linkedin.com/in/juanlama/detail/recent-activity/)
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Researchers Discover that COVID-19 Can Cause Brain Cells to Fuse

Researchers Discover that COVID-19 Can Cause Brain Cells to Fuse | Virus World | Scoop.it

Researchers at The University of Queensland have discovered viruses such as SARS-CoV-2 can cause brain cells to fuse, initiating malfunctions that lead to chronic neurological symptoms. Professor Massimo Hilliard and Dr. Ramon Martinez-Marmol from the Queensland Brain Institute have explored how viruses alter the function of the nervous system. Their research is published in Science Advances. SARS-CoV-2, the virus that causes COVID-19, has been detected in the brains of people with "long COVID" months after their initial infection. "We discovered COVID-19 causes neurons to undergo a cell fusion process, which has not been seen before," Professor Hilliard said. "After neuronal infection with SARS-CoV-2, the spike S protein becomes present in neurons, and once neurons fuse, they don't die. They either start firing synchronously, or they stop functioning altogether." As an analogy, Professor Hilliard likened the role of neurons to that of wires connecting switches to the lights in a kitchen and a bathroom.

Professor Massimo Hilliard and Dr. Ramon Martinez-Marmol from the Queensland Brain Institute have explored how viruses alter the function of the nervous system. Their research is published in Science Advances.

 

SARS-CoV-2, the virus that causes COVID-19, has been detected in the brains of people with "long COVID" months after their initial infection. "We discovered COVID-19 causes neurons to undergo a cell fusion process, which has not been seen before," Professor Hilliard said. "After neuronal infection with SARS-CoV-2, the spike S protein becomes present in neurons, and once neurons fuse, they don't die. They either start firing synchronously, or they stop functioning altogether." As an analogy, Professor Hilliard likened the role of neurons to that of wires connecting switches to the lights in a kitchen and a bathroom. "Once fusion takes place, each switch either turns on both the kitchen and bathroom lights at the same time, or neither of them," he said. "It's bad news for the two independent circuits." The discovery offers a potential explanation for persistent neurological effects after a viral infection.

 

"In the current understanding of what happens when a virus enters the brain, there are two outcomes—either cell death or inflammation," Dr. Martinez-Marmol said. "But we've shown a third possible outcome, which is neuronal fusion." Dr. Martinez-Marmol said numerous viruses cause cell fusion in other tissues, but also infect the nervous system and could be causing the same problem there. "These viruses include HIV, rabies, Japanese encephalitis, measles, herpes simplex virus and Zika virus," he said. "Our research reveals a new mechanism for the neurological events that happen during a viral infection. This is potentially a major cause of neurological diseases and clinical symptoms that is still unexplored." The researchers acknowledge the collaborative efforts of Professor Lars Ittner and Associate Professor Yazi Ke from Macquarie University, Associate Professor Giuseppe Balistreri from University of Helsinki and Associate Professor Kirsty Short and Professor Frederic Meunier from The University of Queensland.

 

Original research published (June 7, 2023) in Science Advances:

https://www.science.org/doi/10.1126/sciadv.adg2248 

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Detection of SARS-CoV-2 Viral Proteins and Genomic Sequences in Human Brainstem Nuclei -  NPJ Parkinson's Disease

Detection of SARS-CoV-2 Viral Proteins and Genomic Sequences in Human Brainstem Nuclei -  NPJ Parkinson's Disease | Virus World | Scoop.it

Neurological manifestations are common in COVID-19, the disease caused by SARS-CoV-2. Despite reports of SARS-CoV-2 detection in the brain and cerebrospinal fluid of COVID-19 patients, it is still unclear whether the virus can infect the central nervous system, and which neuropathological alterations can be ascribed to viral tropism, rather than immune-mediated mechanisms. Here, we assess neuropathological alterations in 24 COVID-19 patients and 18 matched controls who died due to pneumonia/respiratory failure. Aside from a wide spectrum of neuropathological alterations, SARS-CoV-2-immunoreactive neurons were detected in the dorsal medulla and in the substantia nigra of five COVID-19 subjects. Viral RNA was also detected by real-time RT-PCR. Quantification of reactive microglia revealed an anatomically segregated pattern of inflammation within affected brainstem regions, and was higher when compared to controls. While the results of this study support the neuroinvasive potential of SARS-CoV-2 and characterize the role of brainstem inflammation in COVID-19, its potential implications for neurodegeneration, especially in Parkinson’s disease, require further investigations.

 

Published (Feb. 13, 2023) in npj Parkinson's Disease:

https://doi.org/10.1038/s41531-023-00467-3 

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