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Spike protein causes the destruction of synapses in the brain, neuro-inflammation, memory loss, and cognitive dysfunction 30-45 days after exposure
https://twitter.com/ScienceWDrDoug/status/1647082019501879298
https://www.arca.fiocruz.br/bitstream/handle/icict/57715/LucianeLeon_FabriciaDantas_etal_IOC_2023.
pdf 1,680
posted on 4/15/2023, 3:31:22 PM by Steve Van Doorn
(*in my best Eric Cartman voice* 'I love you, guys')
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Brilliant find here,studies on mice shows the effects of the spike protein in very scientific terms.
Here's a very small portion of a 40 page study.
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SARS-CoV-2 Spike protein induces TLR4-mediated long-term cognitive dysfunction recapitulating postCOVID-19 syndrome in mice
Graphical abstract
Highlights
d-- Spike protein infusion into mouse brain induces late cognitive
dysfunction
d-- Spike protein induces late hippocampal microgliosis and synapse loss
d-- Blockage of TLR4 renders mice resistant to Spike-induced cognitive dysfunction
d-- TLR4-2604G>A GG genotype was related to poor cognitive outcome in COVID-19 patients,p> Authors
Fabricia L. Fontes-Dantas,
Gabriel G. Fernandes, Elisa G. Gutman, ...,
Soniza V. Alves-Leon, Giselle F. Passos,
Claudia P. Figueiredo
Correspondence
dapoian@bioqmed.ufrj.br (A.T.D.P.),
sonizavieiraalvesleon@gmail.com
(S.V.A.-L.),
gfazzioni@yahoo.com.br (G.F.P.), claudia@pharma.ufrj.br (C.P.F.)
In brief:
Cognitive impairment is frequent in postCOVID-19 syndrome patients, but its underlying mechanisms are unclear.
Fontes-Dantas et al. show that Spike brain infusion in mice induces late neuroinflammation and synapse loss, leading to long-term cognitive impairment mediated by TLR4 signaling.
In patients, genotype GG TLR4-2604G>A