Related Experiment Video
Updated: Oct 22, 2025

Monitoring Changes in Human Umbilical Vein Endothelial Cells upon Viral Infection Using Impedance-Based Real-Time Cell Analysis
Published on: May 5, 2023
Multiple-Organ Complement Deposition on Vascular Endothelium in COVID-19 Patients
Paolo Macor1, Paolo Durigutto2, Alessandro Mangogna3
1Department of Life Sciences, University of Trieste, 34127 Trieste, Italy.
Insights
COVID-19 activates the complement system in multiple organs, including lungs, kidneys, and liver. This study reveals complement component deposition via classical and alternative pathways, contributing to tissue damage in severe COVID-19.
Area of Science:
- Immunology
- Pathology
Background:
- Circulating complement activation products are elevated in COVID-19.
- Tissue-level complement involvement and activation pathways in COVID-19 remain poorly understood.
Purpose of the Study:
- Investigate complement component deposition in lungs, kidneys, and liver of COVID-19 patients.
- Determine the specific complement activation pathways involved in COVID-19 organ damage.
Main Methods:
- Immunofluorescence analysis of autopsy tissues (lungs, kidneys, liver) from 12 COVID-19 patients.
- Staining for complement components (C1q, C4, C3, FB, C5b-9), IgG, and SARS-CoV-2 spike protein.
Main Results:
- Complement components (C1q, C4, C3, C5b-9) and IgG deposited in lung capillaries and alveolar cells, indicating classical pathway activation.
- Factor B (FB) deposits in lungs suggest alternative pathway activation; MBL and MASP-2 were minimally detected.
- Similar complement deposition patterns observed in kidney tubules/vessels and liver vasculature, confirming multi-organ involvement.
Conclusions:
- Classical and alternative complement pathways are activated in multiple organs during severe COVID-19.
- Complement system activation contributes significantly to inflammation and tissue damage in COVID-19 patients.
- Findings highlight the complement system's role in the multi-organ pathology of COVID-19.
Abstract:
Increased levels of circulating complement activation products have been reported in COVID-19 patients, but only limited information is available on complement involvement at the tissue level. The mechanisms and pathways of local complement activation remain unclear. The aim of this study was to investigate the deposition of complement components in the lungs, kidneys, and liver in patients with COVID-19 patients and to determine the pathway/s of complement activation. We performed immunofluorescence analyses of autopsy specimens of lungs, kidney, and liver from 12 COVID-19 patients who died of acute respiratory failure. Snap-frozen samples embedded in OCT were stained with antibodies against complement components and activation products, IgG, and spike protein of SARS-CoV-2. Lung deposits of C1q, C4, C3, and C5b-9 were localized in the capillaries of the interalveolar septa and on alveolar cells. IgG displayed a similar even distribution, suggesting classical pathway activation. The spike protein is a potential target of IgG, but its uneven distribution suggests that other viral and tissue molecules may be targeted by IgG. FB deposits were also seen in COVID-19 lungs and are consistent with activation of the alternative pathway, whereas MBL and MASP-2 were hardly detectable. Analysis of kidney and liver specimens mirrored findings observed in the lung. Complement deposits were seen on tubules and vessels of the kidney with only mild C5b-9 staining in glomeruli, and on the hepatic artery and portal vein of the liver. Complement deposits in different organs of deceased COVID-19 patients caused by activation of the classical and alternative pathways support the multi-organ nature of the disease and the contribution of the complement system to inflammation and tissue damage.
Related Concept Videos
Complement System
Endocarditis II: Clinical Features of Infective Endocarditis
Endocarditis I: Introduction
Pneumonia II: Pathophysiology
COPD: Pathogenesis and Clinical Features
The primary cause for the onset of COPD is cigarette smoking and exposure to air pollution. These hazardous factors initiate a chain reaction within the lungs, resulting in chronic inflammation, damage to the airways, and a...
Acute Coronary Syndrome II: Pathophysiology and Clinical Manifestations

