Lumican is increased in experimental and clinical heart failure, and its production by cardiac fibroblasts is induced by mechanical and proinflammatory stimuli

  • Kristin V. T. Engebretsen
    Department of Cardiothoracic Surgery Oslo University Hospital Ullevål Norway
  • Ida G. Lunde
    Institute for Experimental Medical Research Oslo University Hospital and University of Oslo Norway
  • Mari E. Strand
    Institute for Experimental Medical Research Oslo University Hospital and University of Oslo Norway
  • Anne Waehre
    Institute for Experimental Medical Research Oslo University Hospital and University of Oslo Norway
  • Ivar Sjaastad
    Institute for Experimental Medical Research Oslo University Hospital and University of Oslo Norway
  • Henriette S. Marstein
    Department of Cardiothoracic Surgery Oslo University Hospital Ullevål Norway
  • Biljana Skrbic
    Department of Cardiothoracic Surgery Oslo University Hospital Ullevål Norway
  • Christen P. Dahl
    KG Jebsen Cardiac Research Center and Center for Heart Failure Research University of Oslo Norway
  • Erik T. Askevold
    KG Jebsen Cardiac Research Center and Center for Heart Failure Research University of Oslo Norway
  • Geir Christensen
    Institute for Experimental Medical Research Oslo University Hospital and University of Oslo Norway
  • Johannes L. Bjørnstad
    Department of Cardiothoracic Surgery Oslo University Hospital Ullevål Norway
  • Theis Tønnessen
    Department of Cardiothoracic Surgery Oslo University Hospital Ullevål Norway

書誌事項

公開日
2013-04-02
権利情報
  • http://onlinelibrary.wiley.com/termsAndConditions#vor
DOI
  • 10.1111/febs.12235
公開者
Wiley

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説明

<jats:p>During progression to heart failure (HF), myocardial extracellular matrix (ECM) alterations and tissue inflammation are central. Lumican is an ECM‐localized proteoglycan associated with inflammatory conditions and known to bind collagens. We hypothesized that lumican plays a role in the dynamic alterations in cardiac ECM during development of HF. Thus, we examined left ventricular cardiac lumican in a mouse model of pressure overload and in HF patients, and investigated expression, regulation and effects of increased lumican in cardiac fibroblasts. After 4 weeks of aortic banding, mice were divided into groups of hypertrophy (AB) and HF (ABHF) based on lung weight and left atrial diameter. Sham‐operated mice were used as controls. Accordingly, cardiac lumican <jats:styled-content style="fixed-case">mRNA</jats:styled-content> and protein levels were increased in mice with ABHF. Similarly, cardiac biopsies from patients with end‐stage HF revealed increased lumican <jats:styled-content style="fixed-case">mRNA</jats:styled-content> and protein levels compared with control hearts. <jats:italic>In vitro,</jats:italic> mechanical stretch and the proinflammatory cytokine interleukin‐1β increased lumican <jats:styled-content style="fixed-case">mRNA</jats:styled-content> as well as secreted lumican protein from cardiac fibroblasts. Stimulation with recombinant glycosylated lumican increased collagen type I alpha 2, lysyl oxidase and transforming growth factor‐β1 <jats:styled-content style="fixed-case">mRNA</jats:styled-content>, which was attenuated by costimulation with an inhibitor of the proinflammatory transcription factor NFκB. Furthermore, lumican increased the levels of the dimeric form of collagen type I, decreased the activity of the collagen‐degrading enzyme matrix metalloproteinase‐9 and increased the phosphorylation of fibrosis‐inducing SMAD3. In conclusion<jats:bold>,</jats:bold> cardiac lumican is increased in experimental and clinical HF. Inflammation and mechanical stimuli induce lumican production by cardiac fibroblasts and increased lumican altered molecules important for cardiac remodeling and fibrosis in cardiac fibroblasts, indicating a role in HF development.</jats:p>

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