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Updated: Nov 2, 2025

Author Spotlight: Advancing the Analysis of Plasma Extracellular Vesicle Proteome for Cardiovascular Biomarker Studies
Published on: January 31, 2025
Plasma Proteomics of COVID-19 Associated Cardiovascular Complications: Implications for Pathophysiology and
Jason Roh1, Robert Kitchen1, J Sawalla Guseh2
1Harvard Medical School.
Insights
COVID-19 cardiac injury is linked to biological aging markers and altered protein levels. Follistatin-like 3 (FSTL3) and ADAMTS13 protein changes offer new insights into heart complications in severe COVID-19.
Area of Science:
- Cardiovascular research
- Proteomics
- COVID-19 pathophysiology
Background:
- Cardiovascular complications are frequent in COVID-19, correlating with disease severity and mortality.
- The underlying mechanisms of cardiac injury and failure in COVID-19 remain largely unknown.
Approach:
- Plasma proteomics was conducted on 80 COVID-19 patients and controls, stratified by disease severity and cardiac involvement.
- Findings were validated in 305 additional COVID-19 patients and examined in an animal model.
Key Points:
- Senescence-associated secretory proteins, indicators of biological aging, strongly correlate with COVID-19 severity and cardiac involvement.
- Follistatin-like 3 (FSTL3) upregulation associated with heart failure biomarker NTproBNP.
- ADAMTS13 downregulation linked to myocardial injury, with Mendelian randomization supporting a causal role.
Conclusions:
- This study reveals novel insights into the pathophysiology of cardiovascular complications in COVID-19.
- Identified protein alterations, including FSTL3 and ADAMTS13, may have therapeutic implications for managing COVID-19-related heart conditions.
Abstract:
Cardiovascular complications are common in COVID-19 and strongly associated with disease severity and mortality. However, the mechanisms driving cardiac injury and failure in COVID-19 are largely unknown. We performed plasma proteomics on 80 COVID-19 patients and controls, grouped according to disease severity and cardiac involvement. Findings were validated in 305 independent COVID-19 patients and investigated in an animal model. Here we show that senescence-associated secretory proteins, markers of biological aging, strongly associate with disease severity and cardiac involvement even in age-matched cohorts. FSTL3, an indicator of Activin/TGFβ signaling, was the most significantly upregulated protein associated with the heart failure biomarker, NTproBNP (β = 0.4;p adj =4.6x10 - 7 ), while ADAMTS13, a vWF-cleaving protease whose loss-of-function causes microvascular thrombosis, was the most downregulated protein associated with myocardial injury (β=-0.4;p adj =8x10 - 7 ). Mendelian randomization supported a causal role for ADAMTS13 in myocardial injury. These data provide important new insights into the pathophysiology of COVID-19 cardiovascular complications with therapeutic implications.
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