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Published on: September 12, 2016
Persistent immune and clotting dysfunction detected in saliva and blood plasma after COVID-19
Hyesun Jang1, Saibyasachi Choudhury2, Yanbao Yu3
1Genomic Medicine and Infectious Diseases, J. Craig Venter Institute, La Jolla, CA, and Rockville, MD, USA.
Insights
This study reveals persistent inflammation and immune cell dysfunction in COVID-19 convalescence, highlighting saliva as a key fluid for monitoring long-term health and inflammatory sequelae.
Area of Science:
- Immunology
- Proteomics
- Infectious Diseases
Background:
- COVID-19 (coronavirus disease 2019) is linked to ongoing inflammatory issues.
- Molecular details of normal versus pathological recovery from COVID-19 remain unclear.
Purpose of the Study:
- To characterize immune and proteome responses during COVID-19 convalescence.
- To explore the utility of saliva as a monitoring fluid.
Main Methods:
- Analysis of matched plasma and saliva samples from COVID-19 patients 20-90 days post-symptom resolution.
- Global immune profiling and shotgun proteomics.
- Correlation analysis with disease severity and antibody levels.
Main Results:
- Convalescent subjects exhibited strong IgA and IgG antibody responses.
- Proteomics identified persistent inflammation, including neutrophil dysfunction and plasma clotting factor alterations.
- Saliva showed higher IgA concentrations and altered myeloid pathways linked to SARS-CoV-2 IgA.
Conclusions:
- Persistent inflammatory and coagulation abnormalities occur post-COVID-19.
- Saliva is a promising non-invasive fluid for monitoring immune responses and sequelae after COVID-19.
Abstract:
A growing number of studies indicate that coronavirus disease 2019 (COVID-19) is associated with inflammatory sequelae, but molecular signatures governing the normal versus pathologic convalescence process have not been well-delineated. Here, we characterized global immune and proteome responses in matched plasma and saliva samples obtained from COVID-19 patients collected between 20 and 90 days after initial clinical symptoms resolved. Convalescent subjects showed robust total IgA and IgG responses and positive antibody correlations in saliva and plasma samples. Shotgun proteomics revealed persistent inflammatory patterns in convalescent samples including dysfunction of salivary innate immune cells, such as neutrophil markers (e.g., myeloperoxidase), and clotting factors in plasma (e.g., fibrinogen), with positive correlations to acute COVID-19 disease severity. Saliva samples were characterized by higher concentrations of IgA, and proteomics showed altered myeloid-derived pathways that correlated positively with SARS-CoV-2 IgA levels. Beyond plasma, our study positions saliva as a viable fluid to monitor normal and aberrant immune responses including vascular, inflammatory, and coagulation-related sequelae.
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