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Isolating Central Nervous System Tissues and Associated Meninges for the Downstream Analysis of Immune cells
Published on: May 19, 2020
Microglia dysfunction, neurovascular inflammation and focal neuropathologies are linked to IL-1- and IL-6-related
Rebeka Fekete1, Alba Simats2, Eduárd Bíró3
1Momentum Laboratory of Neuroimmunology, HUN-REN Institute of Experimental Medicine, Budapest, Hungary.
Abstract:
COVID-19 is associated with diverse neurological abnormalities, but the underlying mechanisms are unclear. We hypothesized that microglia, the resident immune cells of the brain, are centrally involved in this process. To study this, we developed an autopsy platform allowing the integration of molecular anatomy, protein and mRNA datasets in postmortem mirror blocks of brain and peripheral organ samples from cases of COVID-19. We observed focal loss of microglial P2Y12R, CX3CR1-CX3CL1 axis deficits and metabolic failure at sites of virus-associated vascular inflammation in severely affected medullary autonomic nuclei and other brain areas. Microglial dysfunction is linked to mitochondrial injury at sites of excessive synapse and myelin phagocytosis and loss of glutamatergic terminals, in line with proteomic changes of synapse assembly, metabolism and neuronal injury. Furthermore, regionally heterogeneous microglial changes are associated with viral load and central and systemic inflammation related to interleukin (IL)-1 or IL-6 via virus-sensing pattern recognition receptors and inflammasomes. Thus, SARS-CoV-2-induced inflammation might lead to a primarily gliovascular failure in the brain, which could be a common contributor to diverse COVID-19-related neuropathologies.
Insights
COVID-19 causes brain abnormalities by damaging microglia, the brain's immune cells. This study reveals SARS-CoV-2-induced inflammation leads to gliovascular failure, contributing to neurological issues.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- COVID-19 presents with varied neurological symptoms, with unclear underlying mechanisms.
- Microglia, the brain's resident immune cells, are hypothesized to play a key role.
Purpose of the Study:
- To investigate the role of microglia in COVID-19-associated neurological abnormalities.
- To elucidate the mechanisms linking SARS-CoV-2 infection to neuropathology.
Main Methods:
- Developed an autopsy platform integrating molecular anatomy, protein, and mRNA data from postmortem brain and organ samples.
- Analyzed microglial function, vascular inflammation, and neuronal injury markers.
Main Results:
- Observed microglial P2Y12R loss, CX3CR1-CX3CL1 axis deficits, and metabolic failure in inflamed brain regions.
- Linked microglial dysfunction to mitochondrial injury, excessive phagocytosis, and synaptic loss.
- Found heterogeneous microglial changes correlated with viral load and systemic inflammation (IL-1, IL-6).
Conclusions:
- SARS-CoV-2-induced inflammation may cause gliovascular failure in the brain.
- This failure could be a common factor in diverse COVID-19-related neuropathologies.
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