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Published on: May 24, 2020
Mild COVID-19 and Impaired Blood Cell-Endothelial Crosstalk: Considering Long-Term Use of Antithrombotics?
Arthur Melkumyants1,2, Ludmila Buryachkovskaya1, Nikita Lomakin3
1Cell Adhesion Department, National Medical Research Center of Cardiology, Moscow, Russia.
Insights
COVID-19 survivors may have persistent blood cell damage, including damaged erythrocytes and endothelial cells, potentially leading to vascular issues. Further research is needed on long-term antithrombotic and vascular protection strategies after mild coronavirus disease 2019.
Area of Science:
- Hematology
- Virology
- Pathology
Background:
- The COVID-19 pandemic highlights vascular and endothelial dysfunction.
- Long-term consequences and optimal antithrombotic strategies remain unclear.
- Limited data exists on blood cellular changes in COVID-19 survivors.
Purpose of the Study:
- To investigate blood cell abnormalities in COVID-19 patients.
- To compare cellular data between COVID-19 patients and healthy controls.
- To assess the persistence of cellular damage post-discharge.
Main Methods:
- Electron microscopy and flow cytometry were used.
- Erythrocytes and circulating endothelial cells were analyzed.
- Patients with confirmed COVID-19 and healthy controls were studied.
Main Results:
- COVID-19 patients had significantly higher circulating endothelial cells with viral-sized fenestrae.
- Erythrocytes formed aggregates, potentially impairing microvascular blood flow and oxygen supply.
- Some patients showed persistent SARS-CoV-2 penetration and cellular abnormalities at discharge.
Conclusions:
- Persistent viral cell injury may cause blood vessel damage, inflammation, and thrombosis.
- Residual blood cell damage is observed in some COVID-19 survivors.
- Outcome-driven trials are needed for long-term antithrombotic and vascular protection strategies.
Background:
Current coronavirus disease 2019 (COVID-19) pandemic reveals thrombotic, vascular, and endothelial dysfunctions at peak disease. However, the duration, degree of damage, and appropriate long-term use of antithrombotic strategies are unclear. Most COVID data are yielded from random clinical observations or autopsy of postmortem samples, while precise blood cellular data in survivors are insufficient.
Methods:
We analyzed erythrocytes, circulating endothelial cells, and echinocytes by electron microscopy and flow cytometry in patients with confirmed COVID-19 (n = 31) and matched healthy controls (n = 32) on admission and at hospital discharge.
Results:
All patients experienced mild disease, none required pulmonary support, and all survived. Admission number of circulating endothelial cells was significantly (40-100 times) higher in COVID-19 patients. Cells were massively damaged by multiple fenestrae in membranes with diameter comparable to the size of supercapsid in SARS-CoV-2 (severe acute respiratory syndrome coronavirus 2) virus. COVID-19 also provoked formation of stacked aggregated erythrocytes capable of clogging microvascular bed and of diminishing oxygen supply. In some patients, such abnormalities persisted at hospital discharge revealing remaining intracellular penetration of SARS-CoV-2 where it may be replicated and returned to circulation.
Conclusion:
These observational and descriptive data suggest that persistent viral cell injury may cause blood vessel damage; their increased permeability resulted in tissue edema, inflammation, platelet activation, and augmented thrombosis. There is a residual blood cell damage following the acute phase in some COVID-19 survivors. Controlled outcome-driven trials are urgently needed for exploring optimal use of long-term antithrombotics and vascular protection strategies even after mild COVID-19.
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