Network medicine links SARS-CoV-2/COVID-19 infection to brain microvascular injury and neuroinflammation in dementia-like cognitive impairment

Сетевая медицина связывает инфекцию SARS-CoV-2/COVID-19 с повреждением микроциркуляторного русла головного мозга и нейровоспалением при когнитивных нарушениях, напоминающих деменцию
Reena Mehra, James B. Leverenz, Lara Jehi, Andrew A. Pieper, Jielin Xu, Yuan Hou, Yadi Zhou, Feixiong Cheng, Yunlong Liu, Haiyuan Yu, Asha Kallianpur
2021-06-09

SARS-CoV-2 host factorsbrain microvascular injurynetwork medicineneuroinflammationsingle-nucleus transcriptomics
BACKGROUND: Dementia-like cognitive impairment is an increasingly reported complication of SARS-CoV-2 infection. However, the underlying mechanisms responsible for this complication remain unclear. A better understanding of causative processes by which COVID-19 may lead to cognitive impairment is essential for developing preventive and therapeutic interventions. METHODS: In this study, we conducted a network-based, multimodal omics comparison of COVID-19 and neurologic complications. We constructed the SARS-CoV-2 virus-host interactome from protein-protein interaction assay and CRISPR-Cas9-based genetic assay results and compared network-based relationships therein with those of known neurological manifestations using network proximity measures. We also investigated the transcriptomic profiles (including single-cell/nuclei RNA-sequencing) of Alzheimer's disease (AD) marker genes from patients infected with COVID-19, as well as the prevalence of SARS-CoV-2 entry factors in the brains of AD patients not infected with SARS-CoV-2. RESULTS: We found significant network-based relationships between COVID-19 and neuroinflammation and brain microvascular injury pathways and processes which are implicated in AD. We also detected aberrant expression of AD biomarkers in the cerebrospinal fluid and blood of patients with COVID-19. While transcriptomic analyses showed relatively low expression of SARS-CoV-2 entry factors in human brain, neuroinflammatory changes were pronounced. In addition, single-nucleus transcriptomic analyses showed that expression of SARS-CoV-2 host factors (BSG and FURIN) and antiviral defense genes (LY6E, IFITM2, IFITM3, and IFNAR1) was elevated in brain endothelial cells of AD patients and healthy controls relative to neurons and other cell types, suggesting a possible role for brain microvascular injury in COVID-19-mediated cognitive impairment. Overall, individuals with the AD risk allele APOE E4/E4 displayed reduced expression of antiviral defense genes compared to APOE E3/E3 individuals. CONCLUSION: Our results suggest significant mechanistic overlap between AD and COVID-19, centered on neuroinflammation and microvascular injury. These results help improve our understanding of COVID-19-associated neurological manifestations and provide guidance for future development of preventive or treatment interventions, although causal relationship and mechanistic pathways between COVID-19 and AD need future investigations.
1
Brain endothelial cells preferentially expressed SARS-CoV-2 host factors BSG and FURIN and antiviral genes LY6E, IFITM2, IFITM3, and IFNAR1 relative to neurons and other cell types.
2
Human brain transcriptomes exhibited relatively low SARS-CoV-2 entry-factor expression, despite pronounced neuroinflammatory changes.
3
Network-based multimodal omics analyses linked SARS-CoV-2 infection to neuroinflammation and brain microvascular injury pathways implicated in Alzheimer’s disease.
4
Patients with COVID-19 showed aberrant Alzheimer’s disease biomarker expression in cerebrospinal fluid and blood.
5
The findings implicate brain microvascular injury and endothelial antiviral responses as possible contributors to COVID-19-associated dementia-like cognitive impairment.

SARS-CoV-2/COVID-19 infection and its effects on the human brain, particularly brain microvascular and neuroinflammatory pathways

The network-based relationship and molecular mechanisms linking COVID-19 to brain microvascular injury, neuroinflammation, and dementia-like cognitive impairment

Publication Details
Publication Date
2021-06-09
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Authors
Reena Mehra
James B. Leverenz
Lara Jehi
Andrew A. Pieper
Jielin Xu
Yuan Hou
Yadi Zhou
Feixiong Cheng
Yunlong Liu
Haiyuan Yu
Asha Kallianpur
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