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Effects of basic fibroblast growth factor on endothelial cells under conditions of simulated microgravity
Authors:Ulbrich Claudia  Westphal Kriss  Baatout Sarah  Wehland Markus  Bauer Johann  Flick Burkhard  Infanger Manfred  Kreutz Reinhold  Vadrucci Sonia  Egli Marcel  Cogoli Augusto  Derradji Hanane  Pietsch Jessica  Paul Martin  Grimm Daniela
Institution:1. Institute of Clinical Pharmacology and Toxicology, Charité‐Universit?tsmedizin Berlin, CBF/CCM, Center of Space Medicine, 14195 Berlin, Germany;2. Laboratory of Molecular and Cellular Biology, Belgian Nuclear Research Centre, SCK‐CEN, Boeretang, 200, 2400 Mol, Belgium;3. Max‐Planck Institute of Biochemistry, 82152 Martinsried, Germany;4. Department of Trauma and Reconstructive Surgery, Charité‐Universit?tsmedizin Berlin, Campus Benjamin Franklin, Center of Space Medicine Berlin, Germany, 12200 Berlin, Germany;5. Zero‐g Lifetec GmbH and Space Biology Group, ETH Zurich, 8005 Zurich, Switzerland
Abstract:Fibroblast growth factors interact with appropriate endothelial cell (EC) surface receptors and initiate intracellular signal cascades, which participate in modulating blood vessel growth. EC, upon exposure to basic fibroblast growth factors (bFGFs) undergo profound functional alterations, which depend on their actual sensitivity and involve gene expression and de novo protein synthesis. We investigated the effects of bFGF on signaling pathways of EA.hy926 cells in different environments. EC were cultured under normal gravity (1 g) and simulated microgravity (micro g) using a three-dimensional (3D) clinostat. Microgravity induced early and late apoptosis, extracellular matrix proteins, endothelin-1 (ET-1) and TGF-beta(1) expression. Microgravity reduced eNOS mRNA within 24 h. Moreover, a six- to eightfold higher amount of IL-6 and IL-8 was secreted within 24 h micro g. In addition, microgravity induced a duplication of NF-kappaB p50, while p65 was quadrupled. At 1 g, bFGF application (4 h) reduced ET-1, TGF-beta(1) and eNOS gene expression. After 24 h, bFGF enhanced fibronectin, VEGF, Flk-1, Flt-1, the release of IL-6, IL-8, and TGF-beta(1). Furthermore, bFGF promoted apoptosis, reduced NFkB p50, but enhanced NFkB p65. After 4 h micro g, bFGF decreased TGF-beta(1), eNOS, and ET-1 gene expression. After 24 h micro g, bFGF elevated fibronectin, Flk-1 and Flt-1 protein, and reduced IL-6 and IL-8 compared with vehicle treated micro g cultures. In micro g, bFGF enhanced NF-KappaB p50 by 50%, Bax by 25% and attenuated p65, activation of caspase-3 and annexin V-positive cells. bFGF differently changes intracellular signals in ECs depending whether it is applied under microgravity or normal gravity conditions. In microgravity, bFGF contributes to protect the EC from apoptosis.
Keywords:NFkappaB  basic fibroblast growth factor  cytokines  apoptosis
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