Alzheimer's‐like signaling in brains of COVID‐19 patients
Сигналинг, подобный болезни Альцгеймера, в мозге пациентов с COVID-19
2022-02-03
SCID: 54.1/hwz4uj3s
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Alzheimer’s-like signalingCOVID-19 neuropathologyTGF-β signalingleaky RyR2 channelstau hyperphosphorylation
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Abstract (AI)
Abstract Introduction The mechanisms that lead to cognitive impairment associated with COVID‐19 are not well understood. Methods Brain lysates from control and COVID‐19 patients were analyzed for oxidative stress and inflammatory signaling pathway markers, and measurements of Alzheimer’s disease (AD)‐linked signaling biochemistry. Post‐translational modifications of the ryanodine receptor/calcium (Ca2+) release channels (RyR) on the endoplasmic reticuli (ER), known to be linked to AD, were also measured by co‐immunoprecipitation/immunoblotting of the brain lysates. Results We provide evidence linking SARS‐CoV‐2 infection to activation of TGF‐β signaling and oxidative overload. The neuropathological pathways causing tau hyperphosphorylation typically associated with AD were also shown to be activated in COVID‐19 patients. RyR2 in COVID‐19 brains demonstrated a “leaky” phenotype, which can promote cognitive and behavioral defects. Discussion COVID‐19 neuropathology includes AD‐like features and leaky RyR2 channels could be a therapeutic target for amelioration of some cognitive defects associated with SARS‐CoV‐2 infection and long COVID.
Key Findings
1
Brain lysates from COVID-19 patients showed activation of TGF-β signaling and oxidative overload compared with controls.
2
COVID-19 brains exhibited activation of neuropathological pathways causing tau hyperphosphorylation, a hallmark typically associated with Alzheimer’s disease.
3
Leaky RyR2 channels may contribute to cognitive and behavioral defects associated with SARS-CoV-2 infection and long COVID.
4
Ryanodine receptor 2 (RyR2) calcium channels displayed a “leaky” phenotype in COVID-19 brains, potentially disrupting neuronal calcium regulation.
5
The findings indicate that COVID-19 neuropathology includes Alzheimer’s-like signaling and identify RyR2 leakiness as a potential therapeutic target.
Research Object
Brains of COVID-19 patients
Research Subject
Alzheimer’s disease–like neuropathological signaling, including oxidative stress, inflammatory/TGF-β activation, tau hyperphosphorylation, and leaky RyR2 calcium channels
Publication Details
Publication Date
2022-02-03
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