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Monitoring Changes in Human Umbilical Vein Endothelial Cells upon Viral Infection Using Impedance-Based Real-Time Cell Analysis
Published on: May 5, 2023
Endothelial Cells in Emerging Viral Infections
Johanna Hol Fosse1, Guttorm Haraldsen2,3, Knut Falk1,4
1Norwegian Veterinary Institute, Oslo, Norway.
Insights
Emerging viruses, including SARS-CoV-2, infect endothelial cells, disrupting vascular function and worsening disease. Understanding these viral-endothelial interactions is crucial for treating severe infections and improving patient outcomes.
Area of Science:
- Virology
- Immunology
- Vascular Biology
Background:
- Severe COVID-19 cases exhibit vascular dysfunction, with SARS-CoV-2 replication observed in endothelial cells.
- Common COVID-19 comorbidities like obesity, hypertension, and diabetes are linked to endothelial dysfunction, exacerbating disease severity.
- Many emerging viruses, such as henipaviruses and avian influenza, target endothelial cells, similar to SARS-CoV-2.
Purpose of the Study:
- To review the critical role of vascular endothelial cells in emerging viral infections.
- To explore endotheliotropism as a potential virulence factor in viral pathogenesis.
- To elucidate mechanisms by which viruses infect endothelial cells and modulate vascular and immune responses.
Main Methods:
- Literature review of studies on viral interactions with endothelial cells.
- Analysis of viral entry mechanisms and endothelial cell responses to infection.
- Discussion of how viral components and immune responses dysregulate endothelial cell function.
Main Results:
- Endothelial cells are key regulators of vascular and immune responses during infection.
- Viral endotheliotropism facilitates infection dissemination and tissue access.
- Viruses can dysregulate endothelial function directly or indirectly through inflammatory responses.
Conclusions:
- Endothelial cell dysfunction is a common feature in severe viral diseases, including COVID-19.
- Understanding virus-endothelial interactions is vital for developing therapeutic strategies against emerging viral infections.
- Further research is needed to fully comprehend the complex mechanisms of viral modulation of endothelial cells.
Abstract:
There are several reasons to consider the role of endothelial cells in COVID-19 and other emerging viral infections. First, severe cases of COVID-19 show a common breakdown of central vascular functions. Second, SARS-CoV-2 replicates in endothelial cells. Third, prior deterioration of vascular function exacerbates disease, as the most common comorbidities of COVID-19 (obesity, hypertension, and diabetes) are all associated with endothelial dysfunction. Importantly, SARS-CoV-2's ability to infect endothelium is shared by many emerging viruses, including henipaviruses, hantavirus, and highly pathogenic avian influenza virus, all specifically targeting endothelial cells. The ability to infect endothelium appears to support generalised dissemination of infection and facilitate the access to certain tissues. The disturbed vascular function observed in severe COVID-19 is also a prominent feature of many other life-threatening viral diseases, underscoring the need to understand how viruses modulate endothelial function. We here review the role of vascular endothelial cells in emerging viral infections, starting with a summary of endothelial cells as key mediators and regulators of vascular and immune responses in health and infection. Next, we discuss endotheliotropism as a possible virulence factor and detail features that regulate viruses' ability to attach to and enter endothelial cells. We move on to review how endothelial cells detect invading viruses and respond to infection, with particular focus on pathways that may influence vascular function and the host immune system. Finally, we discuss how endothelial cell function can be dysregulated in viral disease, either by viral components or as bystander victims of overshooting or detrimental inflammatory and immune responses. Many aspects of how viruses interact with the endothelium remain poorly understood. Considering the diversity of such mechanisms among different emerging viruses allows us to highlight common features that may be of general validity and point out important challenges.
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