Literature DB >> 19168721

Interaction of vascular smooth muscle cells and monocytes by soluble factors synergistically enhances IL-6 and MCP-1 production.

Li Chen1, Adrian Frister, Song Wang, Andreas Ludwig, Hagen Behr, Susanna Pippig, Beibei Li, Andreas Simm, Britt Hofmann, Claudia Pilowski, Susanne Koch, Michael Buerke, Stefan Rose-John, Karl Werdan, Harald Loppnow.   

Abstract

Inflammatory mechanisms contribute to atherogenesis. Monocyte chemoattractant protein (MCP)-1 and IL-6 are potent mediators of inflammation. Both contribute to early atherogenesis by luring monocytes and regulating cell functions in the vessel wall. MCP-1 and IL-6 production resulting from the interaction of invading monocytes with local vessel wall cells may accelerate atherosclerosis. We investigated the influence of the interaction of human vascular smooth muscle cells (SMCs) with human mononuclear cells (MNCs) or monocytes on IL-6 and MCP-1 production in a coculture model. Interaction synergistically enhanced IL-6 and MCP-1 production (up to 30- and 10-fold, respectively) compared with separately cultured cells. This enhancement was mediated by CD14-positive monocytes. It was dependent on the SMC-to-MNC/monocyte ratio, and as few as 0.2 monocytes/SMC induced the synergism. Synergistic IL-6 production was observed at the protein, mRNA, and functional level. It was mediated by soluble factors, and simultaneous inhibition of IL-1, TNF-alpha, and IL-6 completely blocked the synergism. IL-1, TNF-alpha, and IL-6 were present in the cultures. Blockade of the synergism by soluble glycoprotein 130Fc/soluble IL-6 receptor, as well as the induction of synergistic IL-6 production by costimulation of SMCs with IL-1, TNF-alpha, and hyper-IL-6, suggested the involvement of IL-6 trans-signaling. The contribution of IL-6 was consistent with enhanced STAT3 phosphorylation. The present data suggest that SMC/monocyte interactions may augment the proinflammatory status in the tissue, contributing to the acceleration of early atherogenesis.

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Year:  2009        PMID: 19168721     DOI: 10.1152/ajpheart.01158.2008

Source DB:  PubMed          Journal:  Am J Physiol Heart Circ Physiol        ISSN: 0363-6135            Impact factor:   4.733


  17 in total

Review 1.  Complex regulation and function of the inflammatory smooth muscle cell phenotype in atherosclerosis.

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3.  Macrophage-derived IL-18 and increased fibrinogen deposition are age-related inflammatory signatures of vascular remodeling.

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4.  Beneficial effects of flaxseed oil and fish oil diet are through modulation of different hepatic genes involved in lipid metabolism in streptozotocin-nicotinamide induced diabetic rats.

Authors:  Prasad P Devarshi; Nivedita M Jangale; Arvindkumar E Ghule; Subhash L Bodhankar; Abhay M Harsulkar
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5.  Chlamydophila pneumoniae infection leads to smooth muscle cell proliferation and thickening in the coronary artery without contributions from a host immune response.

Authors:  Justin F Deniset; Paul K M Cheung; Elena Dibrov; Kaitlin Lee; Sarah Steigerwald; Grant N Pierce
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6.  Elevated Wall Tension Initiates Interleukin-6 Expression and Abdominal Aortic Dilation.

Authors:  Adam W Akerman; Robert E Stroud; Ryan W Barrs; R Tyler Grespin; Lindsay T McDonald; R Amanda C LaRue; Rupak Mukherjee; John S Ikonomidis; Jeffery A Jones; Jean Marie Ruddy
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7.  Myocardin regulates vascular smooth muscle cell inflammatory activation and disease.

Authors:  Matthew Ackers-Johnson; Amarnath Talasila; Andrew P Sage; Xiaochun Long; Ilze Bot; Nicholas W Morrell; Martin R Bennett; Joseph M Miano; Sanjay Sinha
Journal:  Arterioscler Thromb Vasc Biol       Date:  2015-01-22       Impact factor: 8.311

8.  Mouse aorta-derived mesenchymal progenitor cells contribute to and enhance the immune response of macrophage cells under inflammatory conditions.

Authors:  Jodi F Evans; Veronica Salvador; Sheela George; Cristina Trevino-Gutierrez; Catherine Nunez
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9.  Patients with insulin-dependent diabetes or coronary heart disease following rehabilitation express serum fractalkine levels similar to those in healthy control subjects.

Authors:  Lars Maegdefessel; Axel Schlitt; Susanna Pippig; Bernhard Schwaab; Kerstin Fingscheidt; Uwe Raaz; Michael Buerke; Harald Loppnow
Journal:  Vasc Health Risk Manag       Date:  2009-10-12

10.  A computational model predicting disruption of blood vessel development.

Authors:  Nicole Kleinstreuer; David Dix; Michael Rountree; Nancy Baker; Nisha Sipes; David Reif; Richard Spencer; Thomas Knudsen
Journal:  PLoS Comput Biol       Date:  2013-04-04       Impact factor: 4.475

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