Title of article :
Interleukin-10 Inhibits Human Vascular Smooth Muscle Proliferation
Author/Authors :
Craig H. Selzman، نويسنده , , Robert C. McIntyre Jr، نويسنده , , Brian D. Shames، نويسنده , , Thomas A. Whitehill، نويسنده , , Anirban Banerjee، نويسنده , , Alden H. Harken، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1998
Pages :
8
From page :
889
To page :
896
Abstract :
Arterial injury results in the elaboration of pro-inflammatory substances including cytokines and peptide growth factors which act to modify vascular smooth muscle (VSMC) proliferation and migration with resultant vessel stenosis. Produced by T-lymphocytes and macrophages, interleukin-10 (IL-10) is an anti-inflammatory cytokine in several cell lines. We hypothesized that IL-10 may participate in vascular remodeling by inhibiting VSMC proliferation. Human aortic VSMCs were isolated and cultured. Proliferation assays were performed to determine the effect of the effect of IL-10 on (1) unstimulated, (2) cytokine (tumor necrosis factor-α: TNFα)-stimulated, and (3) growth factor (basic fibroblast growth factor: bFGF)-stimulated VSMC proliferation. Compared to control, both TNFαand bFGF-stimulated VSMC proliferation (P<0.002). IL-10 alone had no effect on cell growth. However, with TNFαor bFGF-stimulation, physiologic doses of IL-10 inhibited both VSMC DNA synthesis and VSMC growth (P<0.001). Furthermore, IL-10 was effective in inhibiting TNFα-induced proliferation at a dose as low as 10 fg/ml (P<0.001) and bFGF-induced proliferation at a dose as low as 1 pg/ml (P<0.001). In conclusion, TNFαand bFGF stimulate human VSMC growth. IL-10 potently abrogates the proliferative response to these atherogenic mitogens. IL-10 might represent an endogenous source of immune-mediated atherprotection and when given exogenously, may prove to be a novel therapeutic agent in regulating vessel wall remodeling following vascular injury.
Keywords :
Vascular Smooth Muscle , interleukin-10 , tumor necrosis factor , Fibroblast growth factor. , cytokines , atherosclerosis
Journal title :
Journal of Molecular and Cellular Cardiology
Serial Year :
1998
Journal title :
Journal of Molecular and Cellular Cardiology
Record number :
525972
Link To Document :
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