Related Experiment Video
Updated: Aug 30, 2026

Quantification of Monocyte Chemotactic Activity In Vivo and Characterization of Blood Monocyte Derived Macrophages
Published on: August 12, 2019
Dexamethasone attenuates oxidation of extracellular matrix proteins by human monocytes
Shahid Ahmed1, Ananea Adamidis, Louis C Jan
1Department of Medicine, Long Island Jewish Medical Center, New Hyde Park, NY 11040, USA.
Abstract:
In response to infection or in immune complex-mediated diseases, inflammatory cells may oxidatively damage extracellular matrix (ECM) proteins. In this study we evaluated whether human monocytes could oxidize ECM and whether this could be modulated by exposure to LPS, IgG complexes, and dexamethasone (DEX). Wells in tissue culture plates were coated with the ECM preparation Matrigel. Porous inserts with or without the human monocyte cell line THP-1 were placed into ECM-containing wells and cells were exposed to control conditions or to LPS (10 ng/ml), IgG complexes (200 and 500 microg/ml), or DEX (10(-7) and 10(-6) M). ECM was then subjected to Western blot analysis using an antibody to oxidized protein. In addition, Western blot analysis was carried out on DEX-treated cells to evaluate expression of the NADPH oxidase components p67-phox and gp91-phox. THP-1 cells enhanced ECM oxidation and this effect was augmented by LPS and by IgG aggregates. Preincubation of cells with DEX attenuated ECM oxidation and was also associated with decreased expression of p67-phox and gp91-phox. These findings suggest that human monocytes can oxidize ECM proteins and that this may be modulated by IgG complexes and LPS. Dexamethasone appears to attenuate ECM oxidation and a better understanding of this mechanism might allow for interventions to minimize oxidative damage to ECM proteins by monocytes in infectious and inflammatory states.
Insights
Human monocytes can oxidize extracellular matrix (ECM) proteins, a process influenced by lipopolysaccharide (LPS) and immune complexes. Dexamethasone (DEX) reduces this oxidative damage by decreasing NADPH oxidase expression.
Area of Science:
- Biochemistry
- Immunology
- Cell Biology
Background:
- Inflammatory cells can cause oxidative damage to extracellular matrix (ECM) proteins during infection and immune complex-mediated diseases.
- Understanding the mechanisms of ECM protein oxidation by monocytes is crucial for developing therapeutic interventions.
Purpose of the Study:
- To investigate if human monocytes oxidize ECM proteins.
- To determine if lipopolysaccharide (LPS), IgG complexes, and dexamethasone (DEX) modulate this oxidation process.
Main Methods:
- Human monocyte cell line (THP-1) exposed to Matrigel-coated wells.
- Treatment with LPS, IgG complexes, or DEX.
- Western blot analysis to detect oxidized ECM proteins and NADPH oxidase components (p67-phox, gp91-phox).
Main Results:
- THP-1 cells enhanced ECM oxidation, with increased oxidation observed upon exposure to LPS and IgG aggregates.
- Dexamethasone (DEX) pre-treatment attenuated ECM oxidation.
- DEX treatment was associated with decreased expression of NADPH oxidase components p67-phox and gp91-phox.
Conclusions:
- Human monocytes possess the capacity to oxidize ECM proteins.
- This oxidation is modulated by inflammatory stimuli like LPS and IgG complexes.
- Dexamethasone mitigates monocyte-mediated ECM oxidation, potentially via downregulation of NADPH oxidase, offering insights for managing oxidative damage in inflammatory conditions.
More Related Videos
09:11Using Cell-substrate Impedance and Live Cell Imaging to Measure Real-time Changes in Cellular Adhesion and De-adhesion Induced by Matrix Modification
Published on: February 19, 2015
11:34A Simple and Efficient Method for Testing Immunomodulatory Agents for Generation of Tolerogenic Dendritic Cells from Human CD14+ Monocytes
Published on: April 11, 2025