4.2 Article

Flax Fiber Hydrophobic Extract Inhibits Human Skin Cells Inflammation and Causes Remodeling of Extracellular Matrix and Wound Closure Activation

期刊

BIOMED RESEARCH INTERNATIONAL
卷 2015, 期 -, 页码 -

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HINDAWI LTD
DOI: 10.1155/2015/862391

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资金

  1. NCBiR, Poland [178676]
  2. Wroclaw Centre of Biotechnology, program The Leading National Research Centre (KNOW)
  3. European Union as part of the European Social Fund
  4. [2012/06/A/NZ1/00006]
  5. [2011/01/B/NZ1/00217]
  6. [N N302 101136]

向作者/读者索取更多资源

Inflammation is the basis ofmany diseases, with chronic wounds amongst them, limiting cell proliferation and tissue regeneration. Our previous preclinical study of flax fiber applied as a wound dressing and analysis of its components impact on the fibroblast transcriptome suggested flax fiber hydrophobic extract use as an anti-inflammatory and wound healing preparation. The extract contains cannabidiol (CBD), phytosterols, and unsaturated fatty acids, showing great promise in wound healing. In in vitro proliferation and wound closure tests the extract activated cell migration and proliferation. The activity of matrix metalloproteinases in skin cells was increased, suggesting activation of extracellular components remodeling. The expression of cytokines was diminished by the extract in a cannabidiol-dependent manner, but beta-sitosterol can act synergistically with CBD in inflammation inhibition. Extracellular matrix related genes were also analyzed, considering their importance in further stages of wound healing. The extract activated skin cell matrix remodeling, but the changes were only partially cannabidiol- and beta-sitosterol-dependent. The possible role of fatty acids also present in the extract is suggested. The study shows the hydrophobic flax fiber components as wound healing activators, with anti-inflammatory cannabidiol acting in synergy with sterols, and migration and proliferation promoting agents, some of which still require experimental identification.

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