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Updated: Aug 12, 2026

On-Chip Endothelial Inflammatory Phenotyping
Published on: July 22, 2012
Role of endothelium in chronic inflammation
1University of Texas Southwestern Medical Center, Dallas 75230-9030.
Insights
Chronic inflammation involves mononuclear cell traffic, guided by cytokines like IL-1 and IFN-gamma. These factors enhance cell adhesion and migration, amplifying inflammatory responses and contributing to conditions like synovitis.
Area of Science:
- Immunology
- Cell Biology
- Pathology
Background:
- Chronic inflammation is characterized by mononuclear cell infiltration.
- Nonspecific factors significantly influence the volume, composition, and distribution of this cellular traffic.
- The initial interaction between circulating mononuclear cells and endothelial cells (EC) of the postcapillary venules (PCV) is crucial.
Purpose of the Study:
- To elucidate the mechanisms governing mononuclear cell traffic in immunologically stimulated chronic inflammation.
- To understand the role of cytokines in enhancing cell adhesion and migration.
- To explore the contribution of these processes to the development of synovitis.
Main Methods:
- The study discusses the binding of lymphocytes to endothelial cells.
- It examines the role of lymphokines (IFN-gamma, TNF-beta) and monokines (IL-1, TNF-alpha) in enhancing this binding.
- Investigates the facilitation of lymphocyte transmigration through endothelium and perivascular space by IFN-gamma and IL-1.
Main Results:
- Cytokines like IFN-gamma and IL-1 enhance mononuclear cell adhesion to EC and migration through endothelium.
- IL-1 acts as a chemoattractant, guiding cells through the perivascular space.
- Synovial lining hyperplasia secretes chemotactic agents, attracting monocytes and potentially leading to chronic inflammatory synovitides.
Conclusions:
- Cytokines play a critical role in amplifying inflammatory infiltrates by regulating mononuclear cell traffic.
- The process involves enhanced adhesion, transmigration, and chemotaxis.
- These mechanisms are implicated in the pathogenesis of chronic inflammatory conditions such as synovitis.
Abstract:
The character of the immunologically stimulated chronic inflammatory infiltrate is to a considerable extent determined by nonspecific factors governing mononuclear cell traffic. The volume, composition and distribution of this traffic is strongly dependent on an initial adhesive interaction between circulating mononuclear cells and the EC of the PCV of the involved tissues. The emigration of lymphocytes from the PCV is preceded by binding of the lymphocytes to the endothelial lining cell. This binding is enhanced by lymphokines (IFN-gamma, TNF-beta) and monokines (IL-1, TNF-alpha), secreted by perivascular inflammatory cells and acting on the EC. This enhancement may permit an initial, immunologically generated small focus of mononuclear cells to amplify itself to a larger infiltrate. Movement of the EC-bound lymphocyte through the endothelium may be facilitated by IFN-gamma, as suggested by evidence that T cells, bound to the surface of EC monolayers overlying nitrocellulose filters, migrate through these monolayers in increased numbers in the presence of IFN-gamma. Movement of the lymphocyte through the wall of the PCV and subsequently through the perivascular space toward the inflammatory focus may be enhanced by the chemotactic action of IL-1, generated by the macrophages of the perivascular infiltrate. The lining layer of the synovial membrane may play an important role in the development of synovitis. Hyperplasia of the synovial lining layer is associated with the secretion of chemotactic agents which can attract monocytes from the PCV toward the lining. The continuous movement of monocytes from PCV to lining may establish a steady-state population of macrophage-like cells in the interstitium of the synovium. These may provide the accessory cell population required for the immune responses which give rise to the various chronic inflammatory synovitides. The sublining layer of the rheumatoid synovium does, in fact, contain large numbers of DR+macrophage+ cells which may represent this accessory cell population. Since the cytokines mediate the inflammatory effects of the cellular immune response, it follows that when injected intraarticularly they should produce synovial inflammation. Such inflammation has, in fact, been produced in experimental animals by the intraarticular injection of supernatants of antigen-stimulated PBMC or of rIL-1. A cytokine-mediated chronic inflammatory reaction may be expected to assemble a polyclonal population of lymphocytes around the PCV. However, the fraction of the accumulated T cells which is antigen reactive is not entirely a random one as indicated by the following.(ABSTRACT TRUNCATED AT 400 WORDS)
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