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Published on: June 23, 2013
Modulation of alveolar macrophage-driven fibroblast proliferation by alternative macrophage mediators
Abstract:
Tissue fibrosis results, in part, from an interaction between growth regulatory molecules released by mononuclear phagocytes and fibroblasts. In the chronic interstitial lung disorders, alveolar macrophages, the mononuclear phagocytes of the lung, are known to spontaneously release two growth factors for fibroblasts, fibronectin and alveolar macrophage-derived growth factor (AMDGF) that together stimulate nonreplicating lung fibroblasts to divide. In addition to these two primary growth promoting signals, alveolar macrophages are able to release other mediators that may have a potential role in modulating lung fibroblast replication in response to these primary signals, including interferon gamma (IFN gamma), prostaglandin E2 (PGE2), and interleukin 1 (IL-1). To evaluate this possibility, we examined the effect of each of these other mediators on lung fibroblast replication in response to fibronectin and AMDGF in serum-free, defined medium. IFN gamma had no effect on fibroblast replication. In contrast, PGE2 resulted in a dose-dependent inhibition of fibroblast replication in response to fibronectin and AMDGF with 50% of the maximum inhibition observed at a PGE2 concentration of less than 10 ng/ml. IL-1, while not active as a primary growth promoting signal, at concentrations of 4-10 U/ml, augmented fibroblast replication in response to fibronectin and AMDGF by 10 to 15%. Temporally, the growth augmenting effect of IL-1 occurred early in the G1 phase of the cell cycle. These data indicate that lung fibroblast replication in response to two of the primary growth promoting signals spontaneously released by alveolar macrophages in the interstitial lung disorders, while uninfluenced by IFN gamma, can be inhibited by PGE2 and modestly augmented by IL-1. Understanding the relevant fibroblast growth modulatory signals within the alveolar microenvironment in the chronic interstitial disorders may lead to rational therapeutic strategies designed to interrupt the fibrotic process.
Insights
Prostaglandin E2 (PGE2) inhibits lung fibroblast replication, while Interleukin-1 (IL-1) modestly augments it, influencing tissue fibrosis in chronic lung disorders.
Area of Science:
- Cell Biology
- Immunology
- Pulmonary Medicine
Background:
- Tissue fibrosis involves interactions between mononuclear phagocytes and fibroblasts.
- Alveolar macrophages release fibronectin and AMDGF, stimulating lung fibroblast division in chronic interstitial lung disorders.
Purpose of the Study:
- To investigate the modulatory effects of interferon gamma (IFN gamma), prostaglandin E2 (PGE2), and interleukin-1 (IL-1) on lung fibroblast replication.
- To understand how these mediators influence fibroblast response to primary growth signals.
Main Methods:
- Lung fibroblasts were cultured in serum-free, defined medium.
- The effect of IFN gamma, PGE2, and IL-1 on fibroblast replication in response to fibronectin and AMDGF was examined.
Main Results:
- IFN gamma had no significant effect on fibroblast replication.
- PGE2 demonstrated dose-dependent inhibition of fibroblast replication.
- IL-1 augmented fibroblast replication by 10-15% and acted early in the G1 phase.
Conclusions:
- Fibroblast replication in interstitial lung disorders is modulated by macrophage-derived mediators.
- PGE2 inhibits, while IL-1 modestly augments, fibroblast proliferation.
- Understanding these signals may lead to new therapeutic strategies for fibrosis.
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