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Effects of Exogenous SARS-CoV-2 S1 Protein and mRNA Vaccines on Mixed Neuronal-Glial Cell Cultures
Vytenis Markevičius1, Eimina Dirvelytė-Valauskė2,3, Urtė Neniškytė2,3
1Neuroscience Institute, Lithuanian University of Health Sciences, Eiveniu Str. 4, LT-50161 Kaunas, Lithuania.
Abstract:
Background and Objectives: SARS-CoV-2 produces potentially pathogenic molecules, such as single-stranded RNA and spike proteins, which can potentially activate microglial cells. In this study, we aimed to investigate whether SARS-CoV-2 spike protein S1 and mRNA vaccines can cause neurotoxicity directly or through microglial involvement. Materials and Methods: Primary cerebellar granule cell cultures isolated from Wistar rats and organotypic hippocampal slice cultures from transgenic C57BL/6J mice were used in the experiments. Imaging and quantitative analysis of cell viability, proliferation, and phagocytic activity were performed using light and fluorescence microscopy. Results: The exogenous SARS-CoV-2 S1 protein at 50 µg/mL concentration induced neuronal cell death in neuronal-glial co-cultures and stimulated microglial proliferation during the first 3 days of exposure without an effect on inflammatory cytokine secretion. Single application of Tozinameran/Riltozinameran and Original/Omicron BA. 4-5 vaccines did not affect neuronal viability and total neuronal number in cell co-cultures after 7 days of exposure. In contrast, three repeated treatments with mRNA vaccines at 6 ng/mL caused microglial proliferation without affecting microglial phagocytosis and TNF-α release. In organotypic brain slice cultures, only Tozinameran/Riltozinameran stimulated microglial cell proliferation in female brain slices, while male brain slices remained unaffected by both vaccines, indicating sex-dependent effects. Conclusions: The findings suggest that mRNA vaccines do not exert neurotoxic effects in primary neuronal-glial co-cultures, but induce microglial proliferation, particularly in female brains in the absence of inflammatory cytokine release. SARS-CoV-2 S1 protein at high concentrations directly induces neuronal death.
Insights
SARS-CoV-2 spike protein S1 can cause neuronal death, while mRNA vaccines do not show neurotoxicity but can increase microglial proliferation, especially in female brains.
Area of Science:
- Neuroscience
- Immunology
- Virology
Background:
- SARS-CoV-2 produces molecules like spike proteins and RNA that may activate microglial cells.
- Investigating potential neurotoxicity of SARS-CoV-2 spike protein S1 and mRNA vaccines is crucial.
Purpose of the Study:
- To determine if SARS-CoV-2 spike protein S1 and mRNA vaccines cause neurotoxicity.
- To examine the role of microglial cells in potential vaccine-induced neurotoxicity.
Main Methods:
- Primary cerebellar granule cell and organotypic hippocampal slice cultures were used.
- Cell viability, proliferation, and phagocytic activity were assessed using microscopy.
- Experiments involved exposure to SARS-CoV-2 S1 protein and mRNA vaccines.
Main Results:
- High concentrations of SARS-CoV-2 S1 protein induced neuronal cell death and microglial proliferation.
- mRNA vaccines did not affect neuronal viability but caused microglial proliferation with repeated exposure.
- Sex-dependent effects were observed, with female brain slices showing increased microglial proliferation.
Conclusions:
- mRNA vaccines do not appear to be directly neurotoxic.
- Microglial proliferation, particularly in female brains, is induced by mRNA vaccines without significant inflammation.
- High-dose SARS-CoV-2 S1 protein demonstrates direct neurotoxic potential.
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