Neurovascular injury with complement activation and inflammation in COVID-19

Нейроваскулярное повреждение с активацией комплемента и воспалением при COVID-19
Dragan Maric, Joseph Steiner, Daniel P. Perl, Avindra Nath, Rebecca D. Folkerth, Robert C. Jones, Iren Horkayne‐Szakaly, Marco M. Hefti, Nicholas Pasternack, Myoung Hwa Lee, Wenxue Li, Farinaz Safavi, Michelle Stram, Joel T. Moncur
2022-04-29

complement activationendothelial cell activationmicrothrombineuroinflammationneurovascular injury
The underlying mechanisms by which severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) leads to acute and long-term neurological manifestations remains obscure. We aimed to characterize the neuropathological changes in patients with coronavirus disease 2019 and determine the underlying pathophysiological mechanisms. In this autopsy study of the brain, we characterized the vascular pathology, the neuroinflammatory changes and cellular and humoral immune responses by immunohistochemistry. All patients died during the first wave of the pandemic from March to July 2020. All patients were adults who died after a short duration of the infection, some had died suddenly with minimal respiratory involvement. Infection with SARS-CoV-2 was confirmed on ante-mortem or post-mortem testing. Descriptive analysis of the pathological changes and quantitative analyses of the infiltrates and vascular changes were performed. All patients had multifocal vascular damage as determined by leakage of serum proteins into the brain parenchyma. This was accompanied by widespread endothelial cell activation. Platelet aggregates and microthrombi were found adherent to the endothelial cells along vascular lumina. Immune complexes with activation of the classical complement pathway were found on the endothelial cells and platelets. Perivascular infiltrates consisted of predominantly macrophages and some CD8+ T cells. Only rare CD4+ T cells and CD20+ B cells were present. Astrogliosis was also prominent in the perivascular regions. Microglial nodules were predominant in the hindbrain, which were associated with focal neuronal loss and neuronophagia. Antibody-mediated cytotoxicity directed against the endothelial cells is the most likely initiating event that leads to vascular leakage, platelet aggregation, neuroinflammation and neuronal injury. Therapeutic modalities directed against immune complexes should be considered.
1
Autopsy brains from adults with COVID-19 showed multifocal vascular damage characterized by serum-protein leakage into the brain parenchyma.
2
Endothelial cells and platelets contained immune complexes with activation of the classical complement pathway.
3
Hindbrain microglial nodules were associated with focal neuronal loss and neuronophagia; antibody-mediated endothelial cytotoxicity was proposed as the initiating mechanism.
4
Perivascular inflammation predominantly involved macrophages and CD8+ T cells, with prominent astrogliosis and relatively few CD4+ T or B cells.
5
Widespread endothelial activation was accompanied by platelet aggregates and microthrombi adherent to vascular endothelial cells.

Brains of adult patients who died from SARS-CoV-2 infection (COVID-19)

Multifocal neurovascular injury and its associated complement-mediated endothelial activation, vascular leakage, thrombosis, neuroinflammation, and neuronal injury

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Publication Date
2022-04-29
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Authors
Dragan Maric
Joseph Steiner
Daniel P. Perl
Avindra Nath
Rebecca D. Folkerth
Robert C. Jones
Iren Horkayne‐Szakaly
Marco M. Hefti
Nicholas Pasternack
Myoung Hwa Lee
Wenxue Li
Farinaz Safavi
Michelle Stram
Joel T. Moncur
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